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Woda Stezenie anionow\nZakres:\nchlorki (0,50 – 500) mg/l\nfluorki (0,10 – 5,00) mg/l\nfosforany (0,30 – 24,0) mg/l\nsiarczany (0,50 – 500) mg/l\nMetoda chromatografii jonowej (IC) z detekcja konduktometryczna PB-04 edycja 18 z dnia 14.02.2024 r.","categories":["water"],"row_index":18,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Anion concentrations","parameters_en":[{"name":"chlorides","range":"(0,50 – 500) mg/l"},{"name":"fluorides","range":"(0,10 – 5,00) mg/l"},{"name":"phosphates","range":"(0,30 – 24,0) mg/l"},{"name":"sulfates","range":"(0,50 – 500) mg/l"}],"search_en":"Water Anion concentrations Ion chromatography (IC) with conductometric detection chlorides fluorides phosphates sulfates PB-04 edycja 18 z dnia 14.02.2024 r.","technique_en":"Ion chromatography (IC) with conductometric detection","test_object_en":"Water","methodology_zh":"阴离子浓度","search_zh":"水 阴离子浓度 氯化物 氟化物 磷酸盐 硫酸盐 PB-04 edycja 18 z dnia 14.02.2024 r.","test_object_zh":"水","parameters_zh":[{"name":"氯化物","range":"(0,50 – 500) mg/l"},{"name":"氟化物","range":"(0,10 – 5,00) mg/l"},{"name":"磷酸盐","range":"(0,30 – 24,0) mg/l"},{"name":"硫酸盐","range":"(0,50 – 500) mg/l"}]},{"_id":"6a832cec884ede9a1b2c574a","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Woda","methodology":"Stężenie wielopierścieniowych węglowodorów aromatycznych (WWA)","parameters":[{"name":"acenaftylen","range":"(0,004 – 1,000) μg/l"},{"name":"acenaften","range":"(0,004 – 1,000) μg/l"},{"name":"fluoren","range":"(0,004 – 1,000) μg/l"},{"name":"fenantren","range":"(0,004 – 1,000) μg/l"},{"name":"antracen","range":"(0,004 – 1,000) μg/l"},{"name":"fluoranten","range":"(0,004 – 1,000) μg/l"},{"name":"piren","range":"(0,004 – 1,000) μg/l"},{"name":"benzo[a]antracen","range":"(0,006 – 1,000) μg/l"},{"name":"chryzen","range":"(0,006 – 1,000) μg/l"},{"name":"benzo[b]fluoranten","range":"(0,010 – 1,000) μg/l"},{"name":"benzo[k]fluoranten","range":"(0,010 – 1,000) μg/l"},{"name":"benzo[e]piren","range":"(0,010 – 1,000) μg/l"},{"name":"benzo[a]piren","range":"(0,010 – 1,000) μg/l"},{"name":"perylen","range":"(0,010 – 1,000) μg/l"},{"name":"indeno[1,2,3-cd]piren","range":"(0,020 – 1,000) μg/l"},{"name":"dibenzo[ah]antracen","range":"(0,020 – 1,000) μg/l"},{"name":"benzo[ghi]perylen","range":"(0,020 – 1,000) μg/l"}],"technique":"Metoda chromatografii gazowej z detekcją spektrometrią mas (GC-MS)","techniques":["Metoda chromatografii gazowej z detekcją spektrometrią mas (GC-MS)"],"computed":[],"activity":"Stężenie wielopierścieniowych węglowodorów aromatycznych (WWA)\nZakres:\nacenaftylen (0,004 – 1,000) μg/l\nacenaften (0,004 – 1,000) μg/l\nfluoren (0,004 – 1,000) μg/l\nfenantren (0,004 – 1,000) μg/l\nantracen (0,004 – 1,000) μg/l\nfluoranten (0,004 – 1,000) μg/l\npiren (0,004 – 1,000) μg/l\nbenzo[a]antracen (0,006 – 1,000) μg/l\nchryzen (0,006 – 1,000) μg/l\nbenzo[b]fluoranten (0,010 – 1,000) μg/l\nbenzo[k]fluoranten (0,010 – 1,000) μg/l\nbenzo[e]piren (0,010 – 1,000) μg/l\nbenzo[a]piren (0,010 – 1,000) μg/l\nperylen (0,010 – 1,000) μg/l\nindeno[1,2,3-cd]piren (0,020 – 1,000) μg/l\ndibenzo[ah]antracen (0,020 – 1,000) μg/l\nbenzo[ghi]perylen (0,020 – 1,000) μg/l\nMetoda chromatografii gazowej z detekcją spektrometrią mas (GC-MS)","reference":"PB-15 edycja 10 z dnia 20.01.2020 r.","norm_bases":["PB-15 edycja 10 z dnia 20.01.2020 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Woda Stężenie wielopierścieniowych węglowodorów aromatycznych (WWA)\nZakres:\nacenaftylen (0,004 – 1,000) μg/l\nacenaften (0,004 – 1,000) μg/l\nfluoren (0,004 – 1,000) μg/l\nfenantren (0,004 – 1,000) μg/l\nantracen (0,004 – 1,000) μg/l\nfluoranten (0,004 – 1,000) μg/l\npiren (0,004 – 1,000) μg/l\nbenzo[a]antracen (0,006 – 1,000) μg/l\nchryzen (0,006 – 1,000) μg/l\nbenzo[b]fluoranten (0,010 – 1,000) μg/l\nbenzo[k]fluoranten (0,010 – 1,000) μg/l\nbenzo[e]piren (0,010 – 1,000) μg/l\nbenzo[a]piren (0,010 – 1,000) μg/l\nperylen (0,010 – 1,000) μg/l\nindeno[1,2,3-cd]piren (0,020 – 1,000) μg/l\ndibenzo[ah]antracen (0,020 – 1,000) μg/l\nbenzo[ghi]perylen (0,020 – 1,000) μg/l\nMetoda chromatografii gazowej z detekcją spektrometrią mas (GC-MS) PB-15 edycja 10 z dnia 20.01.2020 r. Woda Stezenie wielopierscieniowych weglowodorow aromatycznych (WWA)\nZakres:\nacenaftylen (0,004 – 1,000) μg/l\nacenaften (0,004 – 1,000) μg/l\nfluoren (0,004 – 1,000) μg/l\nfenantren (0,004 – 1,000) μg/l\nantracen (0,004 – 1,000) μg/l\nfluoranten (0,004 – 1,000) μg/l\npiren (0,004 – 1,000) μg/l\nbenzo[a]antracen (0,006 – 1,000) μg/l\nchryzen (0,006 – 1,000) μg/l\nbenzo[b]fluoranten (0,010 – 1,000) μg/l\nbenzo[k]fluoranten (0,010 – 1,000) μg/l\nbenzo[e]piren (0,010 – 1,000) μg/l\nbenzo[a]piren (0,010 – 1,000) μg/l\nperylen (0,010 – 1,000) μg/l\nindeno[1,2,3-cd]piren (0,020 – 1,000) μg/l\ndibenzo[ah]antracen (0,020 – 1,000) μg/l\nbenzo[ghi]perylen (0,020 – 1,000) μg/l\nMetoda chromatografii gazowej z detekcja spektrometria mas (GC-MS) PB-15 edycja 10 z dnia 20.01.2020 r.","categories":["water"],"row_index":19,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Concentration of polycyclic aromatic hydrocarbons (PAH)","parameters_en":[{"name":"acenaphthylene","range":"(0,004 – 1,000) μg/l"},{"name":"acenaphthene","range":"(0,004 – 1,000) μg/l"},{"name":"fluorene","range":"(0,004 – 1,000) μg/l"},{"name":"phenanthrene","range":"(0,004 – 1,000) μg/l"},{"name":"anthracene","range":"(0,004 – 1,000) μg/l"},{"name":"fluoranthene","range":"(0,004 – 1,000) μg/l"},{"name":"pyrene","range":"(0,004 – 1,000) μg/l"},{"name":"benzo[a]anthracene","range":"(0,006 – 1,000) μg/l"},{"name":"chrysene","range":"(0,006 – 1,000) μg/l"},{"name":"benzo[b]fluoranthene","range":"(0,010 – 1,000) μg/l"},{"name":"benzo[k]fluoranthene","range":"(0,010 – 1,000) μg/l"},{"name":"benzo[e]pyrene","range":"(0,010 – 1,000) μg/l"},{"name":"benzo[a]pyrene","range":"(0,010 – 1,000) μg/l"},{"name":"perylene","range":"(0,010 – 1,000) μg/l"},{"name":"indeno[1,2,3-cd]pyrene","range":"(0,020 – 1,000) μg/l"},{"name":"dibenzo[ah]anthracene","range":"(0,020 – 1,000) μg/l"},{"name":"benzo[ghi]perylene","range":"(0,020 – 1,000) 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μg/kg"},{"name":"fluoren","range":"(1 – 2000) μg/kg"},{"name":"fenantren","range":"(1 – 2000) μg/kg"},{"name":"antracen","range":"(1 – 2000) μg/kg"},{"name":"fluoranten","range":"(1 – 2000) μg/kg"},{"name":"piren","range":"(1 – 2000) μg/kg"},{"name":"benzo[a]antracen","range":"(2 – 2000) μg/kg"},{"name":"chryzen","range":"(2 – 2000) μg/kg"},{"name":"benzo[b]fluoranten","range":"(3 – 2000) μg/kg"},{"name":"benzo[k]fluoranten","range":"(3 – 2000) μg/kg"},{"name":"benzo[e]piren","range":"(3 – 2000) μg/kg"},{"name":"benzo[a]piren","range":"(3 – 2000) μg/kg"},{"name":"perylen","range":"(3 – 2000) μg/kg"},{"name":"indeno[1,2,3-cd]piren","range":"(5 – 2000) μg/kg"},{"name":"dibenzo[ah]antracen","range":"(5 – 2000) μg/kg"},{"name":"benzo[ghi]perylen","range":"(5 – 2000) μg/kg"}],"technique":"Metoda chromatografii gazowej z detekcją spektrometrią mas (GC-MS)","techniques":["Metoda chromatografii gazowej z detekcją spektrometrią mas (GC-MS)"],"computed":[],"activity":"Zawartość wielopierścieniowych węglowodorów aromatycznych (WWA)\nZakres:\nacenaftylen (1 – 2000) μg/kg\nacenaften (1 – 2000) μg/kg\nfluoren (1 – 2000) μg/kg\nfenantren (1 – 2000) μg/kg\nantracen (1 – 2000) μg/kg\nfluoranten (1 – 2000) μg/kg\npiren (1 – 2000) μg/kg\nbenzo[a]antracen (2 – 2000) μg/kg\nchryzen (2 – 2000) μg/kg\nbenzo[b]fluoranten (3 – 2000) μg/kg\nbenzo[k]fluoranten (3 – 2000) μg/kg\nbenzo[e]piren (3 – 2000) μg/kg\nbenzo[a]piren (3 – 2000) μg/kg\nperylen (3 – 2000) μg/kg\nindeno[1,2,3-cd]piren (5 – 2000) μg/kg\ndibenzo[ah]antracen (5 – 2000) μg/kg\nbenzo[ghi]perylen (5 – 2000) μg/kg\nMetoda chromatografii gazowej z detekcją spektrometrią mas (GC-MS)","reference":"PB-16 edycja 11 z dnia 20.01.2020 r.","norm_bases":["PB-16 edycja 11 z dnia 20.01.2020 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Gleba, osady denne, skały Zawartość wielopierścieniowych węglowodorów aromatycznych (WWA)\nZakres:\nacenaftylen (1 – 2000) μg/kg\nacenaften (1 – 2000) μg/kg\nfluoren (1 – 2000) μg/kg\nfenantren (1 – 2000) μg/kg\nantracen (1 – 2000) μg/kg\nfluoranten (1 – 2000) μg/kg\npiren (1 – 2000) μg/kg\nbenzo[a]antracen (2 – 2000) μg/kg\nchryzen (2 – 2000) μg/kg\nbenzo[b]fluoranten (3 – 2000) μg/kg\nbenzo[k]fluoranten (3 – 2000) μg/kg\nbenzo[e]piren (3 – 2000) μg/kg\nbenzo[a]piren (3 – 2000) μg/kg\nperylen (3 – 2000) μg/kg\nindeno[1,2,3-cd]piren (5 – 2000) μg/kg\ndibenzo[ah]antracen (5 – 2000) μg/kg\nbenzo[ghi]perylen (5 – 2000) μg/kg\nMetoda chromatografii gazowej z detekcją spektrometrią mas (GC-MS) PB-16 edycja 11 z dnia 20.01.2020 r. Gleba, osady denne, skaly Zawartosc wielopierscieniowych weglowodorow aromatycznych (WWA)\nZakres:\nacenaftylen (1 – 2000) μg/kg\nacenaften (1 – 2000) μg/kg\nfluoren (1 – 2000) μg/kg\nfenantren (1 – 2000) μg/kg\nantracen (1 – 2000) μg/kg\nfluoranten (1 – 2000) μg/kg\npiren (1 – 2000) μg/kg\nbenzo[a]antracen (2 – 2000) μg/kg\nchryzen (2 – 2000) μg/kg\nbenzo[b]fluoranten (3 – 2000) μg/kg\nbenzo[k]fluoranten (3 – 2000) μg/kg\nbenzo[e]piren (3 – 2000) μg/kg\nbenzo[a]piren (3 – 2000) μg/kg\nperylen (3 – 2000) μg/kg\nindeno[1,2,3-cd]piren (5 – 2000) μg/kg\ndibenzo[ah]antracen (5 – 2000) μg/kg\nbenzo[ghi]perylen (5 – 2000) μg/kg\nMetoda chromatografii gazowej z detekcja spektrometria mas (GC-MS) PB-16 edycja 11 z dnia 20.01.2020 r.","categories":["water","environment"],"row_index":20,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Polycyclic aromatic hydrocarbons (PAH) content","parameters_en":[{"name":"acenaphthylene","range":"(1 – 2000) μg/kg"},{"name":"acenaphthene","range":"(1 – 2000) μg/kg"},{"name":"fluorene","range":"(1 – 2000) μg/kg"},{"name":"phenanthrene","range":"(1 – 2000) μg/kg"},{"name":"anthracene","range":"(1 – 2000) μg/kg"},{"name":"fluoranthene","range":"(1 – 2000) μg/kg"},{"name":"pyrene","range":"(1 – 2000) μg/kg"},{"name":"benzo[a]anthracene","range":"(2 – 2000) μg/kg"},{"name":"chrysene","range":"(2 – 2000) μg/kg"},{"name":"benzo[b]fluoranthene","range":"(3 – 2000) μg/kg"},{"name":"benzo[k]fluoranthene","range":"(3 – 2000) μg/kg"},{"name":"benzo[e]pyrene","range":"(3 – 2000) μg/kg"},{"name":"benzo[a]pyrene","range":"(3 – 2000) μg/kg"},{"name":"perylene","range":"(3 – 2000) μg/kg"},{"name":"indeno[1,2,3-cd]pyrene","range":"(5 – 2000) μg/kg"},{"name":"dibenzo[ah]anthracene","range":"(5 – 2000) μg/kg"},{"name":"benzo[ghi]perylene","range":"(5 – 2000) μg/kg"}],"search_en":"Soil, bottom sediments, rocks Polycyclic aromatic hydrocarbons (PAH) content Gas chromatography with mass spectrometry detection (GC-MS) acenaphthylene acenaphthene fluorene phenanthrene anthracene fluoranthene pyrene benzo[a]anthracene chrysene benzo[b]fluoranthene benzo[k]fluoranthene benzo[e]pyrene benzo[a]pyrene perylene indeno[1,2,3-cd]pyrene dibenzo[ah]anthracene benzo[ghi]perylene PB-16 edycja 11 z dnia 20.01.2020 r.","technique_en":"Gas chromatography with mass spectrometry detection (GC-MS)","test_object_en":"Soil, bottom sediments, rocks","search_zh":"土壤、底泥、岩石 多环芳烃（PAHs）含量 气相色谱-质谱法（GC-MS） 苊烯 苊 芴 菲 蒽 荧蒽 芘 苯并[a]蒽 䓛 苯并[b]荧蒽 苯并[k]荧蒽 苯并[a]芘 PB-16 edycja 11 z dnia 20.01.2020 r.","technique_zh":"气相色谱-质谱法（GC-MS）","parameters_zh":[{"name":"苊烯","range":"(1 – 2000) μg/kg"},{"name":"苊","range":"(1 – 2000) μg/kg"},{"name":"芴","range":"(1 – 2000) μg/kg"},{"name":"菲","range":"(1 – 2000) μg/kg"},{"name":"蒽","range":"(1 – 2000) μg/kg"},{"name":"荧蒽","range":"(1 – 2000) μg/kg"},{"name":"芘","range":"(1 – 2000) μg/kg"},{"name":"苯并[a]蒽","range":"(2 – 2000) μg/kg"},{"name":"䓛","range":"(2 – 2000) μg/kg"},{"name":"苯并[b]荧蒽","range":"(3 – 2000) μg/kg"},{"name":"苯并[k]荧蒽","range":"(3 – 2000) μg/kg"},{"name":"benzo[e]piren","range":"(3 – 2000) μg/kg"},{"name":"苯并[a]芘","range":"(3 – 2000) μg/kg"},{"name":"perylen","range":"(3 – 2000) μg/kg"},{"name":"indeno[1,2,3-cd]piren","range":"(5 – 2000) μg/kg"},{"name":"dibenzo[ah]antracen","range":"(5 – 2000) μg/kg"},{"name":"benzo[ghi]perylen","range":"(5 – 2000) μg/kg"}],"methodology_zh":"多环芳烃（PAHs）含量","test_object_zh":"土壤、底泥、岩石"},{"_id":"6a832cec884ede9a1b2c574c","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Gleba, osady denne, skały","methodology":"Zawartość węgla całkowitego (TC) i ogólnego węgla organicznego (TOC)","parameters":[{"name":"Zakres","range":"(0,02 – 20,0) %"}],"technique":"Metoda wysokotemperaturowego spalania z detekcją IR","techniques":["Metoda wysokotemperaturowego spalania z detekcją IR"],"computed":[],"activity":"Zawartość węgla całkowitego (TC) i ogólnego węgla organicznego (TOC)\nZakres (0,02 – 20,0) %\nMetoda wysokotemperaturowego spalania z detekcją IR","reference":"PB-44 edycja 6 z dnia 14.02.2024 r.","norm_bases":["PB-44 edycja 6 z dnia 14.02.2024 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Gleba, osady denne, skały Zawartość węgla całkowitego (TC) i ogólnego węgla organicznego (TOC)\nZakres (0,02 – 20,0) %\nMetoda wysokotemperaturowego spalania z detekcją IR PB-44 edycja 6 z dnia 14.02.2024 r. Gleba, osady denne, skaly Zawartosc wegla calkowitego (TC) i ogolnego wegla organicznego (TOC)\nZakres (0,02 – 20,0) %\nMetoda wysokotemperaturowego spalania z detekcja IR PB-44 edycja 6 z dnia 14.02.2024 r.","categories":["water","environment"],"row_index":21,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Content of total carbon (TC) and total organic carbon (TOC)","parameters_en":[{"name":"Range","range":"(0,02 – 20,0) %"}],"search_en":"Soil, bottom sediments, rocks Content of total carbon (TC) and total organic carbon (TOC) High-temperature combustion with IR detection Range PB-44 edycja 6 z dnia 14.02.2024 r.","technique_en":"High-temperature combustion with IR detection","test_object_en":"Soil, bottom sediments, rocks","parameters_zh":[{"name":"范围","range":"(0,02 – 20,0) %"}],"search_zh":"土壤、底泥、岩石 高温燃烧红外检测法 范围 PB-44 edycja 6 z dnia 14.02.2024 r.","technique_zh":"高温燃烧红外检测法","test_object_zh":"土壤、底泥、岩石"},{"_id":"6a832cec884ede9a1b2c574d","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Gleba, osady denne, skały","methodology":"Zawartość węgla nieorganicznego (TIC) (z obliczeń)","parameters":[],"technique":null,"techniques":[],"computed":[],"activity":"Zawartość węgla nieorganicznego (TIC) (z obliczeń)","reference":"PB-44 edycja 6 z dnia 14.02.2024 r.","norm_bases":["PB-44 edycja 6 z dnia 14.02.2024 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Gleba, osady denne, skały Zawartość węgla nieorganicznego (TIC) (z obliczeń) PB-44 edycja 6 z dnia 14.02.2024 r. Gleba, osady denne, skaly Zawartosc wegla nieorganicznego (TIC) (z obliczen) PB-44 edycja 6 z dnia 14.02.2024 r.","categories":["water","environment"],"row_index":22,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Inorganic carbon (TIC) content (calculated)","search_en":"Soil, bottom sediments, rocks Inorganic carbon (TIC) content (calculated) PB-44 edycja 6 z dnia 14.02.2024 r.","test_object_en":"Soil, bottom sediments, rocks","search_zh":"土壤、底泥、岩石 PB-44 edycja 6 z dnia 14.02.2024 r.","test_object_zh":"土壤、底泥、岩石"},{"_id":"6a832cec884ede9a1b2c574e","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Woda","methodology":"Stężenie lotnych chlorowcopochodnych węglowodorów alifatycznych","parameters":[{"name":"chloroetan","range":"(1,0 – 1000) μg/l"},{"name":"bromometan","range":"(1,0 – 1000) μg/l"},{"name":"1,1-dichloroeten","range":"(1,0 – 1000) μg/l"},{"name":"2,2-dichloropropan","range":"(1,0 – 1000) μg/l"},{"name":"trans-1,2-dichloroeten","range":"(1,0 – 1000) μg/l"},{"name":"1,1-dichloropropen","range":"(1,0 – 1000) μg/l"},{"name":"1,1,1-trichloroetan","range":"(1,0 – 1000) μg/l"},{"name":"tetrachlorometan","range":"(1,0 – 1000) μg/l"},{"name":"1,1-dichloroetan","range":"(1,0 – 1000) μg/l"},{"name":"dichlorometan","range":"(1,0 – 1000) μg/l"},{"name":"trichloroeten","range":"(0,3 – 1000) μg/l"},{"name":"cis-1,2-dichloroeten","range":"(1,0 – 1000) μg/l"},{"name":"tetrachloroeten","range":"(0,3 – 1000) μg/l"},{"name":"trichlorometan","range":"(1,0 – 1000) μg/l"},{"name":"chloroeten","range":"(1,0 – 1000) μg/l"},{"name":"1,2-dichloropropan","range":"(1,0 – 1000) μg/l"},{"name":"bromochlorometan","range":"(1,0 – 1000) μg/l"},{"name":"1,2-dichloroetan","range":"(1,0 – 1000) μg/l"},{"name":"trans-1,3-dichloropropen","range":"(1,0 – 1000) μg/l"},{"name":"bromodichlorometan","range":"(1,0 – 1000) μg/l"},{"name":"dibromometan","range":"(1,0 – 1000) μg/l"},{"name":"1,3-dichloropropan","range":"(1,0 – 1000) μg/l"},{"name":"cis-1,3-dichloropropen","range":"(1,0 – 1000) μg/l"},{"name":"1,1,1,2-tetrachloroetan","range":"(1,0 – 1000) μg/l"},{"name":"1,1,2-trichloroetan","range":"(2,0 – 1000) μg/l"},{"name":"dibromochlorometan","range":"(2,0 – 1000) μg/l"},{"name":"tribromometan","range":"(5,0 – 1000) μg/l"},{"name":"1,2,3-trichloropropan","range":"(5,0 – 1000) μg/l"},{"name":"1,3-heksachlorobutadien","range":"(5,0 – 1000) μg/l"},{"name":"1,1,2,2-tetrachloroetan","range":"(5,0 – 1000) μg/l"},{"name":"1,2-dibromo-3-chloropropan","range":"(5,0 – 1000) μg/l"}],"technique":"Metoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS)","techniques":["Metoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS)"],"computed":[],"activity":"Stężenie lotnych chlorowcopochodnych węglowodorów alifatycznych\nZakres:\nchloroetan (1,0 – 1000) μg/l\nbromometan (1,0 – 1000) μg/l\n1,1-dichloroeten (1,0 – 1000) μg/l\n2,2-dichloropropan (1,0 – 1000) μg/l\ntrans-1,2-dichloroeten (1,0 – 1000) μg/l\n1,1-dichloropropen (1,0 – 1000) μg/l\n1,1,1-trichloroetan (1,0 – 1000) μg/l\ntetrachlorometan (1,0 – 1000) μg/l\n1,1-dichloroetan (1,0 – 1000) μg/l\ndichlorometan (1,0 – 1000) μg/l\ntrichloroeten (0,3 – 1000) μg/l\ncis-1,2-dichloroeten (1,0 – 1000) μg/l\ntetrachloroeten (0,3 – 1000) μg/l\ntrichlorometan (1,0 – 1000) μg/l\nchloroeten (1,0 – 1000) μg/l\n1,2-dichloropropan (1,0 – 1000) μg/l\nbromochlorometan (1,0 – 1000) μg/l\n1,2-dichloroetan (1,0 – 1000) μg/l\ntrans-1,3-dichloropropen (1,0 – 1000) μg/l\nbromodichlorometan (1,0 – 1000) μg/l\ndibromometan (1,0 – 1000) μg/l\n1,3-dichloropropan (1,0 – 1000) μg/l\ncis-1,3-dichloropropen (1,0 – 1000) μg/l\n1,1,1,2-tetrachloroetan (1,0 – 1000) μg/l\n1,1,2-trichloroetan (2,0 – 1000) μg/l\ndibromochlorometan (2,0 – 1000) μg/l\ntribromometan (5,0 – 1000) μg/l\n1,2,3-trichloropropan (5,0 – 1000) μg/l\n1,3-heksachlorobutadien (5,0 – 1000) μg/l\n1,1,2,2-tetrachloroetan (5,0 – 1000) μg/l\n1,2-dibromo-3-chloropropan (5,0 – 1000) μg/l\nMetoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS)","reference":"PB-19 edycja 12 z dnia 02.03.2026 r.","norm_bases":["PB-19 edycja 12 z dnia 02.03.2026 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Woda Stężenie lotnych chlorowcopochodnych węglowodorów alifatycznych\nZakres:\nchloroetan (1,0 – 1000) μg/l\nbromometan (1,0 – 1000) μg/l\n1,1-dichloroeten (1,0 – 1000) μg/l\n2,2-dichloropropan (1,0 – 1000) μg/l\ntrans-1,2-dichloroeten (1,0 – 1000) μg/l\n1,1-dichloropropen (1,0 – 1000) μg/l\n1,1,1-trichloroetan (1,0 – 1000) μg/l\ntetrachlorometan (1,0 – 1000) μg/l\n1,1-dichloroetan (1,0 – 1000) μg/l\ndichlorometan (1,0 – 1000) μg/l\ntrichloroeten (0,3 – 1000) μg/l\ncis-1,2-dichloroeten (1,0 – 1000) μg/l\ntetrachloroeten (0,3 – 1000) μg/l\ntrichlorometan (1,0 – 1000) μg/l\nchloroeten (1,0 – 1000) μg/l\n1,2-dichloropropan (1,0 – 1000) μg/l\nbromochlorometan (1,0 – 1000) μg/l\n1,2-dichloroetan (1,0 – 1000) μg/l\ntrans-1,3-dichloropropen (1,0 – 1000) μg/l\nbromodichlorometan (1,0 – 1000) μg/l\ndibromometan (1,0 – 1000) μg/l\n1,3-dichloropropan (1,0 – 1000) μg/l\ncis-1,3-dichloropropen (1,0 – 1000) μg/l\n1,1,1,2-tetrachloroetan (1,0 – 1000) μg/l\n1,1,2-trichloroetan (2,0 – 1000) μg/l\ndibromochlorometan (2,0 – 1000) μg/l\ntribromometan (5,0 – 1000) μg/l\n1,2,3-trichloropropan (5,0 – 1000) μg/l\n1,3-heksachlorobutadien (5,0 – 1000) μg/l\n1,1,2,2-tetrachloroetan (5,0 – 1000) μg/l\n1,2-dibromo-3-chloropropan (5,0 – 1000) μg/l\nMetoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS) PB-19 edycja 12 z dnia 02.03.2026 r. Woda Stezenie lotnych chlorowcopochodnych weglowodorow alifatycznych\nZakres:\nchloroetan (1,0 – 1000) μg/l\nbromometan (1,0 – 1000) μg/l\n1,1-dichloroeten (1,0 – 1000) μg/l\n2,2-dichloropropan (1,0 – 1000) μg/l\ntrans-1,2-dichloroeten (1,0 – 1000) μg/l\n1,1-dichloropropen (1,0 – 1000) μg/l\n1,1,1-trichloroetan (1,0 – 1000) μg/l\ntetrachlorometan (1,0 – 1000) μg/l\n1,1-dichloroetan (1,0 – 1000) μg/l\ndichlorometan (1,0 – 1000) μg/l\ntrichloroeten (0,3 – 1000) μg/l\ncis-1,2-dichloroeten (1,0 – 1000) μg/l\ntetrachloroeten (0,3 – 1000) μg/l\ntrichlorometan (1,0 – 1000) μg/l\nchloroeten (1,0 – 1000) μg/l\n1,2-dichloropropan (1,0 – 1000) μg/l\nbromochlorometan (1,0 – 1000) μg/l\n1,2-dichloroetan (1,0 – 1000) μg/l\ntrans-1,3-dichloropropen (1,0 – 1000) μg/l\nbromodichlorometan (1,0 – 1000) μg/l\ndibromometan (1,0 – 1000) μg/l\n1,3-dichloropropan (1,0 – 1000) μg/l\ncis-1,3-dichloropropen (1,0 – 1000) μg/l\n1,1,1,2-tetrachloroetan (1,0 – 1000) μg/l\n1,1,2-trichloroetan (2,0 – 1000) μg/l\ndibromochlorometan (2,0 – 1000) μg/l\ntribromometan (5,0 – 1000) μg/l\n1,2,3-trichloropropan (5,0 – 1000) μg/l\n1,3-heksachlorobutadien (5,0 – 1000) μg/l\n1,1,2,2-tetrachloroetan (5,0 – 1000) μg/l\n1,2-dibromo-3-chloropropan (5,0 – 1000) μg/l\nMetoda chromatografii gazowej z analiza fazy nadpowierzchniowej i detekcja spektrometria mas (HS-GC-MS) PB-19 edycja 12 z dnia 02.03.2026 r.","categories":["water"],"row_index":23,"parse_version":4,"parse_source":"agent-claude-code","parameters_en":[{"name":"chloroethane","range":"(1,0 – 1000) μg/l"},{"name":"bromomethane","range":"(1,0 – 1000) μg/l"},{"name":"1,1-dichloroethene","range":"(1,0 – 1000) μg/l"},{"name":"2,2-dichloropropane","range":"(1,0 – 1000) μg/l"},{"name":"trans-1,2-dichloroethene","range":"(1,0 – 1000) μg/l"},{"name":"1,1-dichloropropene","range":"(1,0 – 1000) μg/l"},{"name":"1,1,1-trichloroethane","range":"(1,0 – 1000) μg/l"},{"name":"tetrachloromethane","range":"(1,0 – 1000) μg/l"},{"name":"1,1-dichloroethane","range":"(1,0 – 1000) μg/l"},{"name":"dichloromethane","range":"(1,0 – 1000) μg/l"},{"name":"trichloroethene","range":"(0,3 – 1000) μg/l"},{"name":"cis-1,2-dichloroethene","range":"(1,0 – 1000) μg/l"},{"name":"tetrachloroethene","range":"(0,3 – 1000) μg/l"},{"name":"trichloromethane","range":"(1,0 – 1000) μg/l"},{"name":"chloroethene","range":"(1,0 – 1000) μg/l"},{"name":"1,2-dichloropropane","range":"(1,0 – 1000) μg/l"},{"name":"bromochloromethane","range":"(1,0 – 1000) μg/l"},{"name":"1,2-dichloroethane","range":"(1,0 – 1000) μg/l"},{"name":"trans-1,3-dichloropropene","range":"(1,0 – 1000) μg/l"},{"name":"bromodichloromethane","range":"(1,0 – 1000) μg/l"},{"name":"dibromomethane","range":"(1,0 – 1000) μg/l"},{"name":"1,3-dichloropropane","range":"(1,0 – 1000) μg/l"},{"name":"cis-1,3-dichloropropene","range":"(1,0 – 1000) μg/l"},{"name":"1,1,1,2-tetrachloroethane","range":"(1,0 – 1000) μg/l"},{"name":"1,1,2-trichloroethane","range":"(2,0 – 1000) μg/l"},{"name":"dibromochloromethane","range":"(2,0 – 1000) μg/l"},{"name":"tribromomethane","range":"(5,0 – 1000) μg/l"},{"name":"1,2,3-trichloropropane","range":"(5,0 – 1000) μg/l"},{"name":"1,3-hexachlorobutadiene","range":"(5,0 – 1000) μg/l"},{"name":"1,1,2,2-tetrachloroethane","range":"(5,0 – 1000) μg/l"},{"name":"1,2-dibromo-3-chloropropane","range":"(5,0 – 1000) μg/l"}],"search_en":"Water Headspace gas chromatography with mass spectrometry detection (HS-GC-MS) chloroethane bromomethane 1,1-dichloroethene 2,2-dichloropropane trans-1,2-dichloroethene 1,1-dichloropropene 1,1,1-trichloroethane tetrachloromethane 1,1-dichloroethane dichloromethane trichloroethene cis-1,2-dichloroethene tetrachloroethene trichloromethane chloroethene 1,2-dichloropropane bromochloromethane 1,2-dichloroethane trans-1,3-dichloropropene bromodichloromethane dibromomethane 1,3-dichloropropane cis-1,3-dichloropropene 1,1,1,2-tetrachloroethane 1,1,2-trichloroethane dibromochloromethane tribromomethane 1,2,3-trichloropropane 1,3-hexachlorobutadiene 1,1,2,2-tetrachloroethane 1,2-dibromo-3-chloropropane PB-19 edycja 12 z dnia 02.03.2026 r.","technique_en":"Headspace gas chromatography with mass spectrometry detection (HS-GC-MS)","test_object_en":"Water","search_zh":"水 顶空气相色谱-质谱法（HS-GC-MS） 氯乙烷 溴甲烷 1,1-二氯乙烯 2,2-二氯丙烷 反式-1,2-二氯乙烯 1,1-二氯丙烯 1,1,1-三氯乙烷 四氯化碳 1,1-二氯乙烷 二氯甲烷 三氯乙烯 顺式-1,2-二氯乙烯 四氯乙烯 三氯甲烷 氯乙烯 1,2-二氯丙烷 溴氯甲烷 1,2-二氯乙烷 反式-1,3-二氯丙烯 一溴二氯甲烷 二溴甲烷 1,3-二氯丙烷 顺式-1,3-二氯丙烯 1,1,1,2-四氯乙烷 1,1,2-三氯乙烷 二溴一氯甲烷 三溴甲烷 1,2,3-三氯丙烷 1,1,2,2-四氯乙烷 1,2-二溴-3-氯丙烷 PB-19 edycja 12 z dnia 02.03.2026 r.","test_object_zh":"水","parameters_zh":[{"name":"氯乙烷","range":"(1,0 – 1000) μg/l"},{"name":"溴甲烷","range":"(1,0 – 1000) μg/l"},{"name":"1,1-二氯乙烯","range":"(1,0 – 1000) μg/l"},{"name":"2,2-二氯丙烷","range":"(1,0 – 1000) μg/l"},{"name":"反式-1,2-二氯乙烯","range":"(1,0 – 1000) μg/l"},{"name":"1,1-二氯丙烯","range":"(1,0 – 1000) μg/l"},{"name":"1,1,1-三氯乙烷","range":"(1,0 – 1000) μg/l"},{"name":"四氯化碳","range":"(1,0 – 1000) μg/l"},{"name":"1,1-二氯乙烷","range":"(1,0 – 1000) μg/l"},{"name":"二氯甲烷","range":"(1,0 – 1000) μg/l"},{"name":"三氯乙烯","range":"(0,3 – 1000) μg/l"},{"name":"顺式-1,2-二氯乙烯","range":"(1,0 – 1000) μg/l"},{"name":"四氯乙烯","range":"(0,3 – 1000) μg/l"},{"name":"三氯甲烷","range":"(1,0 – 1000) μg/l"},{"name":"氯乙烯","range":"(1,0 – 1000) μg/l"},{"name":"1,2-二氯丙烷","range":"(1,0 – 1000) μg/l"},{"name":"溴氯甲烷","range":"(1,0 – 1000) μg/l"},{"name":"1,2-二氯乙烷","range":"(1,0 – 1000) μg/l"},{"name":"反式-1,3-二氯丙烯","range":"(1,0 – 1000) μg/l"},{"name":"一溴二氯甲烷","range":"(1,0 – 1000) μg/l"},{"name":"二溴甲烷","range":"(1,0 – 1000) μg/l"},{"name":"1,3-二氯丙烷","range":"(1,0 – 1000) μg/l"},{"name":"顺式-1,3-二氯丙烯","range":"(1,0 – 1000) μg/l"},{"name":"1,1,1,2-四氯乙烷","range":"(1,0 – 1000) μg/l"},{"name":"1,1,2-三氯乙烷","range":"(2,0 – 1000) μg/l"},{"name":"二溴一氯甲烷","range":"(2,0 – 1000) μg/l"},{"name":"三溴甲烷","range":"(5,0 – 1000) μg/l"},{"name":"1,2,3-三氯丙烷","range":"(5,0 – 1000) μg/l"},{"name":"1,3-heksachlorobutadien","range":"(5,0 – 1000) μg/l"},{"name":"1,1,2,2-四氯乙烷","range":"(5,0 – 1000) μg/l"},{"name":"1,2-二溴-3-氯丙烷","range":"(5,0 – 1000) μg/l"}],"technique_zh":"顶空气相色谱-质谱法（HS-GC-MS）"},{"_id":"6a832cec884ede9a1b2c574f","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Woda","methodology":"Stężenie lotnych węglowodorów aromatycznych","parameters":[{"name":"benzen","range":"(0,2 – 1000) μg/l"},{"name":"toluen","range":"(0,5 – 1000) μg/l"},{"name":"etylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1,4-dimetylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1,3-dimetylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"izopropylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1,2-dimetylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"n-propylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"chlorobenzen","range":"(1,0 – 1000) μg/l"},{"name":"tertbutylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1,3,5-trimetylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1-izopropylo-4-metylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"styren","range":"(0,5 – 1000) μg/l"},{"name":"sec-butylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1,2,4-trimetylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1-chloro-2-metylobenzen","range":"(1,0 – 1000) μg/l"},{"name":"n-butylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1-chloro-4-metylobenzen","range":"(1,0 – 1000) μg/l"},{"name":"bromobenzen","range":"(2,0 – 1000) μg/l"},{"name":"1,4-dichlorobenzen","range":"(1,0 – 1000) μg/l"},{"name":"1,3-dichlorobenzen","range":"(1,0 – 1000) μg/l"},{"name":"1,2-dichlorobenzen","range":"(1,0 – 1000) μg/l"},{"name":"1,3,5-trichlorobenzen","range":"(1,0 – 1000) μg/l"},{"name":"1,2,4-trichlorobenzen","range":"(1,0 – 1000) μg/l"},{"name":"1,2,3-trichlorobenzen","range":"(1,0 – 1000) μg/l"},{"name":"naftalen","range":"(1,0 – 1000) μg/l"}],"technique":"Metoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS)","techniques":["Metoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS)"],"computed":[],"activity":"Stężenie lotnych węglowodorów aromatycznych\nZakres:\nbenzen (0,2 – 1000) μg/l\ntoluen (0,5 – 1000) μg/l\netylobenzen (0,5 – 1000) μg/l\n1,4-dimetylobenzen (0,5 – 1000) μg/l\n1,3-dimetylobenzen (0,5 – 1000) μg/l\nizopropylobenzen (0,5 – 1000) μg/l\n1,2-dimetylobenzen (0,5 – 1000) μg/l\nn-propylobenzen (0,5 – 1000) μg/l\nchlorobenzen (1,0 – 1000) μg/l\ntertbutylobenzen (0,5 – 1000) μg/l\n1,3,5-trimetylobenzen (0,5 – 1000) μg/l\n1-izopropylo-4-metylobenzen (0,5 – 1000) μg/l\nstyren (0,5 – 1000) μg/l\nsec-butylobenzen (0,5 – 1000) μg/l\n1,2,4-trimetylobenzen (0,5 – 1000) μg/l\n1-chloro-2-metylobenzen (1,0 – 1000) μg/l\nn-butylobenzen (0,5 – 1000) μg/l\n1-chloro-4-metylobenzen (1,0 – 1000) μg/l\nbromobenzen (2,0 – 1000) μg/l\n1,4-dichlorobenzen (1,0 – 1000) μg/l\n1,3-dichlorobenzen (1,0 – 1000) μg/l\n1,2-dichlorobenzen (1,0 – 1000) μg/l\n1,3,5-trichlorobenzen (1,0 – 1000) μg/l\n1,2,4-trichlorobenzen (1,0 – 1000) μg/l\n1,2,3-trichlorobenzen (1,0 – 1000) μg/l\nnaftalen (1,0 – 1000) μg/l\nMetoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS)","reference":"PB-21 edycja 12 z dnia 02.03.2026 r.","norm_bases":["PB-21 edycja 12 z dnia 02.03.2026 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Woda Stężenie lotnych węglowodorów aromatycznych\nZakres:\nbenzen (0,2 – 1000) μg/l\ntoluen (0,5 – 1000) μg/l\netylobenzen (0,5 – 1000) μg/l\n1,4-dimetylobenzen (0,5 – 1000) μg/l\n1,3-dimetylobenzen (0,5 – 1000) μg/l\nizopropylobenzen (0,5 – 1000) μg/l\n1,2-dimetylobenzen (0,5 – 1000) μg/l\nn-propylobenzen (0,5 – 1000) μg/l\nchlorobenzen (1,0 – 1000) μg/l\ntertbutylobenzen (0,5 – 1000) μg/l\n1,3,5-trimetylobenzen (0,5 – 1000) μg/l\n1-izopropylo-4-metylobenzen (0,5 – 1000) μg/l\nstyren (0,5 – 1000) μg/l\nsec-butylobenzen (0,5 – 1000) μg/l\n1,2,4-trimetylobenzen (0,5 – 1000) μg/l\n1-chloro-2-metylobenzen (1,0 – 1000) μg/l\nn-butylobenzen (0,5 – 1000) μg/l\n1-chloro-4-metylobenzen (1,0 – 1000) μg/l\nbromobenzen (2,0 – 1000) μg/l\n1,4-dichlorobenzen (1,0 – 1000) μg/l\n1,3-dichlorobenzen (1,0 – 1000) μg/l\n1,2-dichlorobenzen (1,0 – 1000) μg/l\n1,3,5-trichlorobenzen (1,0 – 1000) μg/l\n1,2,4-trichlorobenzen (1,0 – 1000) μg/l\n1,2,3-trichlorobenzen (1,0 – 1000) μg/l\nnaftalen (1,0 – 1000) μg/l\nMetoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS) PB-21 edycja 12 z dnia 02.03.2026 r. Woda Stezenie lotnych weglowodorow aromatycznych\nZakres:\nbenzen (0,2 – 1000) μg/l\ntoluen (0,5 – 1000) μg/l\netylobenzen (0,5 – 1000) μg/l\n1,4-dimetylobenzen (0,5 – 1000) μg/l\n1,3-dimetylobenzen (0,5 – 1000) μg/l\nizopropylobenzen (0,5 – 1000) μg/l\n1,2-dimetylobenzen (0,5 – 1000) μg/l\nn-propylobenzen (0,5 – 1000) μg/l\nchlorobenzen (1,0 – 1000) μg/l\ntertbutylobenzen (0,5 – 1000) μg/l\n1,3,5-trimetylobenzen (0,5 – 1000) μg/l\n1-izopropylo-4-metylobenzen (0,5 – 1000) μg/l\nstyren (0,5 – 1000) μg/l\nsec-butylobenzen (0,5 – 1000) μg/l\n1,2,4-trimetylobenzen (0,5 – 1000) μg/l\n1-chloro-2-metylobenzen (1,0 – 1000) μg/l\nn-butylobenzen (0,5 – 1000) μg/l\n1-chloro-4-metylobenzen (1,0 – 1000) μg/l\nbromobenzen (2,0 – 1000) μg/l\n1,4-dichlorobenzen (1,0 – 1000) μg/l\n1,3-dichlorobenzen (1,0 – 1000) μg/l\n1,2-dichlorobenzen (1,0 – 1000) μg/l\n1,3,5-trichlorobenzen (1,0 – 1000) μg/l\n1,2,4-trichlorobenzen (1,0 – 1000) μg/l\n1,2,3-trichlorobenzen (1,0 – 1000) μg/l\nnaftalen (1,0 – 1000) μg/l\nMetoda chromatografii gazowej z analiza fazy nadpowierzchniowej i detekcja spektrometria mas (HS-GC-MS) PB-21 edycja 12 z dnia 02.03.2026 r.","categories":["water"],"row_index":24,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Concentration of volatile aromatic hydrocarbons","parameters_en":[{"name":"benzene","range":"(0,2 – 1000) μg/l"},{"name":"toluene","range":"(0,5 – 1000) μg/l"},{"name":"ethylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"1,4-dimetylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1,3-dimethylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"isopropylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"1,2-dimethylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"n-propylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"chlorobenzene","range":"(1,0 – 1000) μg/l"},{"name":"tert-butylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"1,3,5-trimethylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"1-isopropyl-4-methylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"styrene","range":"(0,5 – 1000) μg/l"},{"name":"sec-butylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"1,2,4-trimethylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"1-chloro-2-methylbenzene","range":"(1,0 – 1000) μg/l"},{"name":"n-butylbenzene","range":"(0,5 – 1000) μg/l"},{"name":"1-chloro-4-methylbenzene","range":"(1,0 – 1000) μg/l"},{"name":"bromobenzene","range":"(2,0 – 1000) μg/l"},{"name":"1,4-dichlorobenzene","range":"(1,0 – 1000) μg/l"},{"name":"1,3-dichlorobenzene","range":"(1,0 – 1000) μg/l"},{"name":"1,2-dichlorobenzene","range":"(1,0 – 1000) μg/l"},{"name":"1,3,5-trichlorobenzene","range":"(1,0 – 1000) μg/l"},{"name":"1,2,4-trichlorobenzene","range":"(1,0 – 1000) μg/l"},{"name":"1,2,3-trichlorobenzene","range":"(1,0 – 1000) μg/l"},{"name":"naphthalene","range":"(1,0 – 1000) μg/l"}],"search_en":"Water Concentration of volatile aromatic hydrocarbons Headspace gas chromatography with mass spectrometry detection (HS-GC-MS) benzene toluene ethylbenzene 1,3-dimethylbenzene isopropylbenzene 1,2-dimethylbenzene n-propylbenzene chlorobenzene tert-butylbenzene 1,3,5-trimethylbenzene 1-isopropyl-4-methylbenzene styrene sec-butylbenzene 1,2,4-trimethylbenzene 1-chloro-2-methylbenzene n-butylbenzene 1-chloro-4-methylbenzene bromobenzene 1,4-dichlorobenzene 1,3-dichlorobenzene 1,2-dichlorobenzene 1,3,5-trichlorobenzene 1,2,4-trichlorobenzene 1,2,3-trichlorobenzene naphthalene PB-21 edycja 12 z dnia 02.03.2026 r.","technique_en":"Headspace gas chromatography with mass spectrometry detection (HS-GC-MS)","test_object_en":"Water","search_zh":"水 挥发性芳香烃浓度 顶空气相色谱-质谱法（HS-GC-MS） 苯 甲苯 乙苯 异丙苯 正丙苯 氯苯 1,3,5-三甲苯 苯乙烯 仲丁苯 1,2,4-三甲苯 正丁苯 溴苯 1,4-二氯苯 1,3-二氯苯 1,2-二氯苯 1,3,5-三氯苯 1,2,4-三氯苯 1,2,3-三氯苯 萘 PB-21 edycja 12 z dnia 02.03.2026 r.","test_object_zh":"水","parameters_zh":[{"name":"苯","range":"(0,2 – 1000) μg/l"},{"name":"甲苯","range":"(0,5 – 1000) μg/l"},{"name":"乙苯","range":"(0,5 – 1000) μg/l"},{"name":"1,4-dimetylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1,3-dimetylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"异丙苯","range":"(0,5 – 1000) μg/l"},{"name":"1,2-dimetylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"正丙苯","range":"(0,5 – 1000) μg/l"},{"name":"氯苯","range":"(1,0 – 1000) μg/l"},{"name":"tertbutylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"1,3,5-三甲苯","range":"(0,5 – 1000) μg/l"},{"name":"1-izopropylo-4-metylobenzen","range":"(0,5 – 1000) μg/l"},{"name":"苯乙烯","range":"(0,5 – 1000) μg/l"},{"name":"仲丁苯","range":"(0,5 – 1000) μg/l"},{"name":"1,2,4-三甲苯","range":"(0,5 – 1000) μg/l"},{"name":"1-chloro-2-metylobenzen","range":"(1,0 – 1000) μg/l"},{"name":"正丁苯","range":"(0,5 – 1000) μg/l"},{"name":"1-chloro-4-metylobenzen","range":"(1,0 – 1000) μg/l"},{"name":"溴苯","range":"(2,0 – 1000) μg/l"},{"name":"1,4-二氯苯","range":"(1,0 – 1000) μg/l"},{"name":"1,3-二氯苯","range":"(1,0 – 1000) μg/l"},{"name":"1,2-二氯苯","range":"(1,0 – 1000) μg/l"},{"name":"1,3,5-三氯苯","range":"(1,0 – 1000) μg/l"},{"name":"1,2,4-三氯苯","range":"(1,0 – 1000) μg/l"},{"name":"1,2,3-三氯苯","range":"(1,0 – 1000) μg/l"},{"name":"萘","range":"(1,0 – 1000) μg/l"}],"technique_zh":"顶空气相色谱-质谱法（HS-GC-MS）","methodology_zh":"挥发性芳香烃浓度"},{"_id":"6a832cec884ede9a1b2c5750","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Gleba, osady denne, skały","methodology":"Zawartość lotnych węglowodorów aromatycznych","parameters":[{"name":"benzen","range":"(1,0 – 5000) μg/kg"},{"name":"toluen","range":"(1,0 – 5000) μg/kg"},{"name":"etylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"1,4-dimetylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"1,3-dimetylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"izopropylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"1,2-dimetylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"n-propylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"chlorobenzen","range":"(5,0 – 5000) μg/kg"},{"name":"tertbutylobenzen","range":"(5,0 – 5000) μg/kg"},{"name":"1,3,5-trimetylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"1-izopropylo-4-metylobenzen","range":"(2,5 – 5000) μg/kg"},{"name":"styren","range":"(1,0 – 5000) μg/kg"},{"name":"sec-butylobenzen","range":"(2,5 – 5000) μg/kg"},{"name":"1,2,4-trimetylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"1-chloro-2-metylobenzen","range":"(5,0 – 5000) μg/kg"},{"name":"n-butylobenzen","range":"(2,5 – 5000) μg/kg"},{"name":"1-chloro-4-metylobenzen","range":"(5,0 – 5000) μg/kg"},{"name":"bromobenzen","range":"(5,0 – 5000) μg/kg"},{"name":"1,4-dichlorobenzen","range":"(8,0 – 5000) μg/kg"},{"name":"1,3-dichlorobenzen","range":"(8,0 – 5000) μg/kg"},{"name":"1,2-dichlorobenzen","range":"(8,0 – 5000) μg/kg"},{"name":"1,3,5-trichlorobenzen","range":"(12 – 5000) μg/kg"},{"name":"1,2,4-trichlorobenzen","range":"(12 – 5000) μg/kg"},{"name":"naftalen","range":"(2,5 – 5000) μg/kg"}],"technique":"Metoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS)","techniques":["Metoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS)"],"computed":[],"activity":"Zawartość lotnych węglowodorów aromatycznych\nZakres:\nbenzen (1,0 – 5000) μg/kg\ntoluen (1,0 – 5000) μg/kg\netylobenzen (1,0 – 5000) μg/kg\n1,4-dimetylobenzen (1,0 – 5000) μg/kg\n1,3-dimetylobenzen (1,0 – 5000) μg/kg\nizopropylobenzen (1,0 – 5000) μg/kg\n1,2-dimetylobenzen (1,0 – 5000) μg/kg\nn-propylobenzen (1,0 – 5000) μg/kg\nchlorobenzen (5,0 – 5000) μg/kg\ntertbutylobenzen (5,0 – 5000) μg/kg\n1,3,5-trimetylobenzen (1,0 – 5000) μg/kg\n1-izopropylo-4-metylobenzen (2,5 – 5000) μg/kg\nstyren (1,0 – 5000) μg/kg\nsec-butylobenzen (2,5 – 5000) μg/kg\n1,2,4-trimetylobenzen (1,0 – 5000) μg/kg\n1-chloro-2-metylobenzen (5,0 – 5000) μg/kg\nn-butylobenzen (2,5 – 5000) μg/kg\n1-chloro-4-metylobenzen (5,0 – 5000) μg/kg\nbromobenzen (5,0 – 5000) μg/kg\n1,4-dichlorobenzen (8,0 – 5000) μg/kg\n1,3-dichlorobenzen (8,0 – 5000) μg/kg\n1,2-dichlorobenzen (8,0 – 5000) μg/kg\n1,3,5-trichlorobenzen (12 – 5000) μg/kg\n1,2,4-trichlorobenzen (12 – 5000) μg/kg\nnaftalen (2,5 – 5000) μg/kg\nMetoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS)","reference":"PB-22 edycja 11 z dnia 02.03.2026 r.","norm_bases":["PB-22 edycja 11 z dnia 02.03.2026 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Gleba, osady denne, skały Zawartość lotnych węglowodorów aromatycznych\nZakres:\nbenzen (1,0 – 5000) μg/kg\ntoluen (1,0 – 5000) μg/kg\netylobenzen (1,0 – 5000) μg/kg\n1,4-dimetylobenzen (1,0 – 5000) μg/kg\n1,3-dimetylobenzen (1,0 – 5000) μg/kg\nizopropylobenzen (1,0 – 5000) μg/kg\n1,2-dimetylobenzen (1,0 – 5000) μg/kg\nn-propylobenzen (1,0 – 5000) μg/kg\nchlorobenzen (5,0 – 5000) μg/kg\ntertbutylobenzen (5,0 – 5000) μg/kg\n1,3,5-trimetylobenzen (1,0 – 5000) μg/kg\n1-izopropylo-4-metylobenzen (2,5 – 5000) μg/kg\nstyren (1,0 – 5000) μg/kg\nsec-butylobenzen (2,5 – 5000) μg/kg\n1,2,4-trimetylobenzen (1,0 – 5000) μg/kg\n1-chloro-2-metylobenzen (5,0 – 5000) μg/kg\nn-butylobenzen (2,5 – 5000) μg/kg\n1-chloro-4-metylobenzen (5,0 – 5000) μg/kg\nbromobenzen (5,0 – 5000) μg/kg\n1,4-dichlorobenzen (8,0 – 5000) μg/kg\n1,3-dichlorobenzen (8,0 – 5000) μg/kg\n1,2-dichlorobenzen (8,0 – 5000) μg/kg\n1,3,5-trichlorobenzen (12 – 5000) μg/kg\n1,2,4-trichlorobenzen (12 – 5000) μg/kg\nnaftalen (2,5 – 5000) μg/kg\nMetoda chromatografii gazowej z analizą fazy nadpowierzchniowej i detekcją spektrometrią mas (HS-GC-MS) PB-22 edycja 11 z dnia 02.03.2026 r. Gleba, osady denne, skaly Zawartosc lotnych weglowodorow aromatycznych\nZakres:\nbenzen (1,0 – 5000) μg/kg\ntoluen (1,0 – 5000) μg/kg\netylobenzen (1,0 – 5000) μg/kg\n1,4-dimetylobenzen (1,0 – 5000) μg/kg\n1,3-dimetylobenzen (1,0 – 5000) μg/kg\nizopropylobenzen (1,0 – 5000) μg/kg\n1,2-dimetylobenzen (1,0 – 5000) μg/kg\nn-propylobenzen (1,0 – 5000) μg/kg\nchlorobenzen (5,0 – 5000) μg/kg\ntertbutylobenzen (5,0 – 5000) μg/kg\n1,3,5-trimetylobenzen (1,0 – 5000) μg/kg\n1-izopropylo-4-metylobenzen (2,5 – 5000) μg/kg\nstyren (1,0 – 5000) μg/kg\nsec-butylobenzen (2,5 – 5000) μg/kg\n1,2,4-trimetylobenzen (1,0 – 5000) μg/kg\n1-chloro-2-metylobenzen (5,0 – 5000) μg/kg\nn-butylobenzen (2,5 – 5000) μg/kg\n1-chloro-4-metylobenzen (5,0 – 5000) μg/kg\nbromobenzen (5,0 – 5000) μg/kg\n1,4-dichlorobenzen (8,0 – 5000) μg/kg\n1,3-dichlorobenzen (8,0 – 5000) μg/kg\n1,2-dichlorobenzen (8,0 – 5000) μg/kg\n1,3,5-trichlorobenzen (12 – 5000) μg/kg\n1,2,4-trichlorobenzen (12 – 5000) μg/kg\nnaftalen (2,5 – 5000) μg/kg\nMetoda chromatografii gazowej z analiza fazy nadpowierzchniowej i detekcja spektrometria mas (HS-GC-MS) PB-22 edycja 11 z dnia 02.03.2026 r.","categories":["water","environment"],"row_index":25,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Volatile aromatic hydrocarbon content","parameters_en":[{"name":"benzene","range":"(1,0 – 5000) μg/kg"},{"name":"toluene","range":"(1,0 – 5000) μg/kg"},{"name":"ethylbenzene","range":"(1,0 – 5000) μg/kg"},{"name":"1,4-dimetylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"1,3-dimethylbenzene","range":"(1,0 – 5000) μg/kg"},{"name":"isopropylbenzene","range":"(1,0 – 5000) μg/kg"},{"name":"1,2-dimethylbenzene","range":"(1,0 – 5000) μg/kg"},{"name":"n-propylbenzene","range":"(1,0 – 5000) μg/kg"},{"name":"chlorobenzene","range":"(5,0 – 5000) μg/kg"},{"name":"tert-butylbenzene","range":"(5,0 – 5000) μg/kg"},{"name":"1,3,5-trimethylbenzene","range":"(1,0 – 5000) μg/kg"},{"name":"1-isopropyl-4-methylbenzene","range":"(2,5 – 5000) μg/kg"},{"name":"styrene","range":"(1,0 – 5000) μg/kg"},{"name":"sec-butylbenzene","range":"(2,5 – 5000) μg/kg"},{"name":"1,2,4-trimethylbenzene","range":"(1,0 – 5000) μg/kg"},{"name":"1-chloro-2-methylbenzene","range":"(5,0 – 5000) μg/kg"},{"name":"n-butylbenzene","range":"(2,5 – 5000) μg/kg"},{"name":"1-chloro-4-methylbenzene","range":"(5,0 – 5000) μg/kg"},{"name":"bromobenzene","range":"(5,0 – 5000) μg/kg"},{"name":"1,4-dichlorobenzene","range":"(8,0 – 5000) μg/kg"},{"name":"1,3-dichlorobenzene","range":"(8,0 – 5000) μg/kg"},{"name":"1,2-dichlorobenzene","range":"(8,0 – 5000) μg/kg"},{"name":"1,3,5-trichlorobenzene","range":"(12 – 5000) μg/kg"},{"name":"1,2,4-trichlorobenzene","range":"(12 – 5000) μg/kg"},{"name":"naphthalene","range":"(2,5 – 5000) μg/kg"}],"search_en":"Soil, bottom sediments, rocks Volatile aromatic hydrocarbon content Headspace gas chromatography with mass spectrometry detection (HS-GC-MS) benzene toluene ethylbenzene 1,3-dimethylbenzene isopropylbenzene 1,2-dimethylbenzene n-propylbenzene chlorobenzene tert-butylbenzene 1,3,5-trimethylbenzene 1-isopropyl-4-methylbenzene styrene sec-butylbenzene 1,2,4-trimethylbenzene 1-chloro-2-methylbenzene n-butylbenzene 1-chloro-4-methylbenzene bromobenzene 1,4-dichlorobenzene 1,3-dichlorobenzene 1,2-dichlorobenzene 1,3,5-trichlorobenzene 1,2,4-trichlorobenzene naphthalene PB-22 edycja 11 z dnia 02.03.2026 r.","technique_en":"Headspace gas chromatography with mass spectrometry detection (HS-GC-MS)","test_object_en":"Soil, bottom sediments, rocks","parameters_zh":[{"name":"苯","range":"(1,0 – 5000) μg/kg"},{"name":"甲苯","range":"(1,0 – 5000) μg/kg"},{"name":"乙苯","range":"(1,0 – 5000) μg/kg"},{"name":"1,4-dimetylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"1,3-dimetylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"异丙苯","range":"(1,0 – 5000) μg/kg"},{"name":"1,2-dimetylobenzen","range":"(1,0 – 5000) μg/kg"},{"name":"正丙苯","range":"(1,0 – 5000) μg/kg"},{"name":"氯苯","range":"(5,0 – 5000) μg/kg"},{"name":"tertbutylobenzen","range":"(5,0 – 5000) μg/kg"},{"name":"1,3,5-三甲苯","range":"(1,0 – 5000) μg/kg"},{"name":"1-izopropylo-4-metylobenzen","range":"(2,5 – 5000) μg/kg"},{"name":"苯乙烯","range":"(1,0 – 5000) μg/kg"},{"name":"仲丁苯","range":"(2,5 – 5000) μg/kg"},{"name":"1,2,4-三甲苯","range":"(1,0 – 5000) μg/kg"},{"name":"1-chloro-2-metylobenzen","range":"(5,0 – 5000) μg/kg"},{"name":"正丁苯","range":"(2,5 – 5000) μg/kg"},{"name":"1-chloro-4-metylobenzen","range":"(5,0 – 5000) μg/kg"},{"name":"溴苯","range":"(5,0 – 5000) μg/kg"},{"name":"1,4-二氯苯","range":"(8,0 – 5000) μg/kg"},{"name":"1,3-二氯苯","range":"(8,0 – 5000) μg/kg"},{"name":"1,2-二氯苯","range":"(8,0 – 5000) μg/kg"},{"name":"1,3,5-三氯苯","range":"(12 – 5000) μg/kg"},{"name":"1,2,4-三氯苯","range":"(12 – 5000) μg/kg"},{"name":"萘","range":"(2,5 – 5000) μg/kg"}],"search_zh":"土壤、底泥、岩石 挥发性芳香烃含量 顶空气相色谱-质谱法（HS-GC-MS） 苯 甲苯 乙苯 异丙苯 正丙苯 氯苯 1,3,5-三甲苯 苯乙烯 仲丁苯 1,2,4-三甲苯 正丁苯 溴苯 1,4-二氯苯 1,3-二氯苯 1,2-二氯苯 1,3,5-三氯苯 1,2,4-三氯苯 萘 PB-22 edycja 11 z dnia 02.03.2026 r.","technique_zh":"顶空气相色谱-质谱法（HS-GC-MS）","test_object_zh":"土壤、底泥、岩石","methodology_zh":"挥发性芳香烃含量"},{"_id":"6a832cec884ede9a1b2c5751","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Gleba, osady denne, skały","methodology":"Suma olejów mineralnych","parameters":[{"name":"Zakres","range":"(10,0 – 600) mg/kg"}],"technique":"Metoda spektrometrii w zakresie podczerwieni (IR)","techniques":["Metoda spektrometrii w zakresie podczerwieni (IR)"],"computed":[],"activity":"Suma olejów mineralnych\nZakres (10,0 – 600) mg/kg\nMetoda spektrometrii w zakresie podczerwieni (IR)","reference":"PB-38 edycja 9 z dnia 01.03.2023 r.","norm_bases":["PB-38 edycja 9 z dnia 01.03.2023 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Gleba, osady denne, skały Suma olejów mineralnych\nZakres (10,0 – 600) mg/kg\nMetoda spektrometrii w zakresie podczerwieni (IR) PB-38 edycja 9 z dnia 01.03.2023 r. Gleba, osady denne, skaly Suma olejow mineralnych\nZakres (10,0 – 600) mg/kg\nMetoda spektrometrii w zakresie podczerwieni (IR) PB-38 edycja 9 z dnia 01.03.2023 r.","categories":["water","environment","petro"],"row_index":26,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Sum of mineral oils","parameters_en":[{"name":"Range","range":"(10,0 – 600) mg/kg"}],"search_en":"Soil, bottom sediments, rocks Sum of mineral oils Spectrometry method in the infrared range (IR) Range PB-38 edycja 9 z dnia 01.03.2023 r.","technique_en":"Spectrometry method in the infrared range (IR)","test_object_en":"Soil, bottom sediments, rocks","parameters_zh":[{"name":"范围","range":"(10,0 – 600) mg/kg"}],"search_zh":"土壤、底泥、岩石 红外光谱法（IR） 范围 PB-38 edycja 9 z dnia 01.03.2023 r.","technique_zh":"红外光谱法（IR）","test_object_zh":"土壤、底泥、岩石"},{"_id":"6a832cec884ede9a1b2c5752","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Woda","methodology":"Suma olejów mineralnych","parameters":[{"name":"Zakres","range":"(0,20 – 4,00) mg/l"}],"technique":"Metoda spektrometrii w zakresie podczerwieni (IR)","techniques":["Metoda spektrometrii w zakresie podczerwieni (IR)"],"computed":[],"activity":"Suma olejów mineralnych\nZakres (0,20 – 4,00) mg/l\nMetoda spektrometrii w zakresie podczerwieni (IR)","reference":"PB-39 edycja 9 z dnia 01.03.2023 r.","norm_bases":["PB-39 edycja 9 z dnia 01.03.2023 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Woda Suma olejów mineralnych\nZakres (0,20 – 4,00) mg/l\nMetoda spektrometrii w zakresie podczerwieni (IR) PB-39 edycja 9 z dnia 01.03.2023 r. Woda Suma olejow mineralnych\nZakres (0,20 – 4,00) mg/l\nMetoda spektrometrii w zakresie podczerwieni (IR) PB-39 edycja 9 z dnia 01.03.2023 r.","categories":["water","petro"],"row_index":27,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Sum of mineral oils","parameters_en":[{"name":"Range","range":"(0,20 – 4,00) mg/l"}],"search_en":"Water Sum of mineral oils Spectrometry method in the infrared range (IR) Range PB-39 edycja 9 z dnia 01.03.2023 r.","technique_en":"Spectrometry method in the infrared range (IR)","test_object_en":"Water","parameters_zh":[{"name":"范围","range":"(0,20 – 4,00) mg/l"}],"search_zh":"水 红外光谱法（IR） 范围 PB-39 edycja 9 z dnia 01.03.2023 r.","test_object_zh":"水","technique_zh":"红外光谱法（IR）"},{"_id":"6a832cec884ede9a1b2c5753","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Woda","methodology":"Stężenie pestycydów chloroorganicznych oraz polichlorowanych bifenyli","parameters":[{"name":"α-HCH","range":"(0,010 – 1,000) μg/l"},{"name":"heksachlorobenzen","range":"(0,001 – 1,000) μg/l"},{"name":"β-HCH","range":"(0,010 – 1,000) μg/l"},{"name":"γ-HCH","range":"(0,010 – 1,000) μg/l"},{"name":"δ-HCH","range":"(0,010 – 1,000) μg/l"},{"name":"heptachlor","range":"(0,015 – 1,000) μg/l"},{"name":"aldryna","range":"(0,002 – 1,000) μg/l"},{"name":"epoksyd heptachloru","range":"(0,001 – 1,000) μg/l"},{"name":"γ-chlordan","range":"(0,001 – 1,000) μg/l"},{"name":"endosulfan I","range":"(0,001 – 1,000) μg/l"},{"name":"α-chlordan","range":"(0,001 – 1,000) μg/l"},{"name":"dieldryna","range":"(0,001 – 2,000) μg/l"},{"name":"p,p’-DDE","range":"(0,001 – 2,000) μg/l"},{"name":"endryna","range":"(0,005 – 2,000) μg/l"},{"name":"endosulfan II","range":"(0,005 – 2,000) μg/l"},{"name":"p,p’-DDD","range":"(0,001 – 2,000) μg/l"},{"name":"aldehyd endryny","range":"(0,001 – 2,000) μg/l"},{"name":"siarczan endodsulfanu","range":"(0,010 – 2,000) μg/l"},{"name":"p,p’-DDT","range":"(0,010 – 2,000) μg/l"},{"name":"keton endryny","range":"(0,001 – 2,000) μg/l"},{"name":"metoksychlor","range":"(0,10 – 10,00) μg/l"},{"name":"PCB 28","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 52","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 101","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 118","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 153","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 138","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 180","range":"(0,001 – 1,000) μg/l"}],"technique":"Metoda chromatografii gazowej z detekcją wychwytu elektronów (GC-ECD)","techniques":["Metoda chromatografii gazowej z detekcją wychwytu elektronów (GC-ECD)"],"computed":[],"activity":"Stężenie pestycydów chloroorganicznych oraz polichlorowanych bifenyli\nZakres:\nα-HCH (0,010 – 1,000) μg/l\nheksachlorobenzen (0,001 – 1,000) μg/l\nβ-HCH (0,010 – 1,000) μg/l\nγ-HCH (0,010 – 1,000) μg/l\nδ-HCH (0,010 – 1,000) μg/l\nheptachlor (0,015 – 1,000) μg/l\naldryna (0,002 – 1,000) μg/l\nepoksyd heptachloru (0,001 – 1,000) μg/l\nγ-chlordan (0,001 – 1,000) μg/l\nendosulfan I (0,001 – 1,000) μg/l\nα-chlordan (0,001 – 1,000) μg/l\ndieldryna (0,001 – 2,000) μg/l\np,p’-DDE (0,001 – 2,000) μg/l\nendryna (0,005 – 2,000) μg/l\nendosulfan II (0,005 – 2,000) μg/l\np,p’-DDD (0,001 – 2,000) μg/l\naldehyd endryny (0,001 – 2,000) μg/l\nsiarczan endodsulfanu (0,010 – 2,000) μg/l\np,p’-DDT (0,010 – 2,000) μg/l\nketon endryny (0,001 – 2,000) μg/l\nmetoksychlor (0,10 – 10,00) μg/l\nPCB 28 (0,001 – 1,000) μg/l\nPCB 52 (0,001 – 1,000) μg/l\nPCB 101 (0,001 – 1,000) μg/l\nPCB 118 (0,001 – 1,000) μg/l\nPCB 153 (0,001 – 1,000) μg/l\nPCB 138 (0,001 – 1,000) μg/l\nPCB 180 (0,001 – 1,000) μg/l\nMetoda chromatografii gazowej z detekcją wychwytu elektronów (GC-ECD)","reference":"PB-31 edycja 11 z dnia 20.01.2020 r.","norm_bases":["PB-31 edycja 11 z dnia 20.01.2020 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Woda Stężenie pestycydów chloroorganicznych oraz polichlorowanych bifenyli\nZakres:\nα-HCH (0,010 – 1,000) μg/l\nheksachlorobenzen (0,001 – 1,000) μg/l\nβ-HCH (0,010 – 1,000) μg/l\nγ-HCH (0,010 – 1,000) μg/l\nδ-HCH (0,010 – 1,000) μg/l\nheptachlor (0,015 – 1,000) μg/l\naldryna (0,002 – 1,000) μg/l\nepoksyd heptachloru (0,001 – 1,000) μg/l\nγ-chlordan (0,001 – 1,000) μg/l\nendosulfan I (0,001 – 1,000) μg/l\nα-chlordan (0,001 – 1,000) μg/l\ndieldryna (0,001 – 2,000) μg/l\np,p’-DDE (0,001 – 2,000) μg/l\nendryna (0,005 – 2,000) μg/l\nendosulfan II (0,005 – 2,000) μg/l\np,p’-DDD (0,001 – 2,000) μg/l\naldehyd endryny (0,001 – 2,000) μg/l\nsiarczan endodsulfanu (0,010 – 2,000) μg/l\np,p’-DDT (0,010 – 2,000) μg/l\nketon endryny (0,001 – 2,000) μg/l\nmetoksychlor (0,10 – 10,00) μg/l\nPCB 28 (0,001 – 1,000) μg/l\nPCB 52 (0,001 – 1,000) μg/l\nPCB 101 (0,001 – 1,000) μg/l\nPCB 118 (0,001 – 1,000) μg/l\nPCB 153 (0,001 – 1,000) μg/l\nPCB 138 (0,001 – 1,000) μg/l\nPCB 180 (0,001 – 1,000) μg/l\nMetoda chromatografii gazowej z detekcją wychwytu elektronów (GC-ECD) PB-31 edycja 11 z dnia 20.01.2020 r. Woda Stezenie pestycydow chloroorganicznych oraz polichlorowanych bifenyli\nZakres:\nα-HCH (0,010 – 1,000) μg/l\nheksachlorobenzen (0,001 – 1,000) μg/l\nβ-HCH (0,010 – 1,000) μg/l\nγ-HCH (0,010 – 1,000) μg/l\nδ-HCH (0,010 – 1,000) μg/l\nheptachlor (0,015 – 1,000) μg/l\naldryna (0,002 – 1,000) μg/l\nepoksyd heptachloru (0,001 – 1,000) μg/l\nγ-chlordan (0,001 – 1,000) μg/l\nendosulfan I (0,001 – 1,000) μg/l\nα-chlordan (0,001 – 1,000) μg/l\ndieldryna (0,001 – 2,000) μg/l\np,p’-DDE (0,001 – 2,000) μg/l\nendryna (0,005 – 2,000) μg/l\nendosulfan II (0,005 – 2,000) μg/l\np,p’-DDD (0,001 – 2,000) μg/l\naldehyd endryny (0,001 – 2,000) μg/l\nsiarczan endodsulfanu (0,010 – 2,000) μg/l\np,p’-DDT (0,010 – 2,000) μg/l\nketon endryny (0,001 – 2,000) μg/l\nmetoksychlor (0,10 – 10,00) μg/l\nPCB 28 (0,001 – 1,000) μg/l\nPCB 52 (0,001 – 1,000) μg/l\nPCB 101 (0,001 – 1,000) μg/l\nPCB 118 (0,001 – 1,000) μg/l\nPCB 153 (0,001 – 1,000) μg/l\nPCB 138 (0,001 – 1,000) μg/l\nPCB 180 (0,001 – 1,000) μg/l\nMetoda chromatografii gazowej z detekcja wychwytu elektronow (GC-ECD) PB-31 edycja 11 z dnia 20.01.2020 r.","categories":["water"],"row_index":28,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Concentration of organochlorine pesticides and polychlorinated biphenyls","parameters_en":[{"name":"α-HCH","range":"(0,010 – 1,000) μg/l"},{"name":"hexachlorobenzene","range":"(0,001 – 1,000) μg/l"},{"name":"β-HCH","range":"(0,010 – 1,000) μg/l"},{"name":"γ-HCH","range":"(0,010 – 1,000) μg/l"},{"name":"δ-HCH","range":"(0,010 – 1,000) μg/l"},{"name":"heptachlor","range":"(0,015 – 1,000) μg/l"},{"name":"aldrin","range":"(0,002 – 1,000) μg/l"},{"name":"heptachlor epoxide","range":"(0,001 – 1,000) μg/l"},{"name":"γ-chlordane","range":"(0,001 – 1,000) μg/l"},{"name":"endosulfan I","range":"(0,001 – 1,000) μg/l"},{"name":"α-chlordane","range":"(0,001 – 1,000) μg/l"},{"name":"dieldrin","range":"(0,001 – 2,000) μg/l"},{"name":"p,p’-DDE","range":"(0,001 – 2,000) μg/l"},{"name":"endrin","range":"(0,005 – 2,000) μg/l"},{"name":"endosulfan II","range":"(0,005 – 2,000) μg/l"},{"name":"p,p’-DDD","range":"(0,001 – 2,000) μg/l"},{"name":"endrin aldehyde","range":"(0,001 – 2,000) μg/l"},{"name":"endosulfan sulphate","range":"(0,010 – 2,000) μg/l"},{"name":"p,p’-DDT","range":"(0,010 – 2,000) μg/l"},{"name":"endrin ketone","range":"(0,001 – 2,000) μg/l"},{"name":"methoxychlor","range":"(0,10 – 10,00) μg/l"},{"name":"PCB 28","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 52","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 101","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 118","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 153","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 138","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 180","range":"(0,001 – 1,000) μg/l"}],"search_en":"Water Concentration of organochlorine pesticides and polychlorinated biphenyls Gas chromatography with electron capture detection (GC-ECD) α-HCH hexachlorobenzene β-HCH γ-HCH δ-HCH heptachlor aldrin heptachlor epoxide γ-chlordane endosulfan I α-chlordane dieldrin p,p’-DDE endrin endosulfan II p,p’-DDD endrin aldehyde endosulfan sulphate p,p’-DDT endrin ketone methoxychlor PCB 28 PCB 52 PCB 101 PCB 118 PCB 153 PCB 138 PCB 180 PB-31 edycja 11 z dnia 20.01.2020 r.","technique_en":"Gas chromatography with electron capture detection (GC-ECD)","test_object_en":"Water","search_zh":"水 气相色谱-电子捕获检测法（GC-ECD） α-六六六 六氯苯 β-六六六 γ-六六六（林丹） δ-六六六 七氯 艾氏剂 环氧七氯 硫丹 I 狄氏剂 p,p'-滴滴伊（DDE） 异狄氏剂 硫丹 II p,p'-滴滴滴（DDD） 异狄氏剂醛 p,p'-滴滴涕（DDT） 异狄氏剂酮 甲氧滴滴涕 PCB 28 PCB 52 PCB 101 PCB 118 PCB 153 PCB 138 PCB 180 PB-31 edycja 11 z dnia 20.01.2020 r.","technique_zh":"气相色谱-电子捕获检测法（GC-ECD）","test_object_zh":"水","parameters_zh":[{"name":"α-六六六","range":"(0,010 – 1,000) μg/l"},{"name":"六氯苯","range":"(0,001 – 1,000) μg/l"},{"name":"β-六六六","range":"(0,010 – 1,000) μg/l"},{"name":"γ-六六六（林丹）","range":"(0,010 – 1,000) μg/l"},{"name":"δ-六六六","range":"(0,010 – 1,000) μg/l"},{"name":"七氯","range":"(0,015 – 1,000) μg/l"},{"name":"艾氏剂","range":"(0,002 – 1,000) μg/l"},{"name":"环氧七氯","range":"(0,001 – 1,000) μg/l"},{"name":"γ-chlordan","range":"(0,001 – 1,000) μg/l"},{"name":"硫丹 I","range":"(0,001 – 1,000) μg/l"},{"name":"α-chlordan","range":"(0,001 – 1,000) μg/l"},{"name":"狄氏剂","range":"(0,001 – 2,000) μg/l"},{"name":"p,p'-滴滴伊（DDE）","range":"(0,001 – 2,000) μg/l"},{"name":"异狄氏剂","range":"(0,005 – 2,000) μg/l"},{"name":"硫丹 II","range":"(0,005 – 2,000) μg/l"},{"name":"p,p'-滴滴滴（DDD）","range":"(0,001 – 2,000) μg/l"},{"name":"异狄氏剂醛","range":"(0,001 – 2,000) μg/l"},{"name":"siarczan endodsulfanu","range":"(0,010 – 2,000) μg/l"},{"name":"p,p'-滴滴涕（DDT）","range":"(0,010 – 2,000) μg/l"},{"name":"异狄氏剂酮","range":"(0,001 – 2,000) μg/l"},{"name":"甲氧滴滴涕","range":"(0,10 – 10,00) μg/l"},{"name":"PCB 28","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 52","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 101","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 118","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 153","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 138","range":"(0,001 – 1,000) μg/l"},{"name":"PCB 180","range":"(0,001 – 1,000) μg/l"}]},{"_id":"6a832cec884ede9a1b2c5754","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Gleba, osady denne, skały","methodology":"Zawartość pestycydów chloroorganicznych oraz polichlorowanych bifenyli","parameters":[{"name":"α-HCH","range":"(0,5 – 50) μg/kg"},{"name":"heksachlorobenzen","range":"(0,1 – 50) μg/kg"},{"name":"β-HCH","range":"(0,5 – 50) μg/kg"},{"name":"γ-HCH","range":"(0,5 – 50) μg/kg"},{"name":"δ-HCH","range":"(0,5 – 50) μg/kg"},{"name":"heptachlor","range":"(0,8 – 50) μg/kg"},{"name":"aldryna","range":"(0,1 – 50) μg/kg"},{"name":"epoksyd heptachloru","range":"(0,1 – 50) μg/kg"},{"name":"γ-chlordan","range":"(0,1 – 50) μg/kg"},{"name":"endosulfan I","range":"(0,5 – 50) μg/kg"},{"name":"α-chlordan","range":"(0,1 – 50) μg/kg"},{"name":"dieldryna","range":"(0,1 – 100) 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pestycydów chloroorganicznych oraz polichlorowanych bifenyli\nZakres:\nα-HCH (0,5 – 50) μg/kg\nheksachlorobenzen (0,1 – 50) μg/kg\nβ-HCH (0,5 – 50) μg/kg\nγ-HCH (0,5 – 50) μg/kg\nδ-HCH (0,5 – 50) μg/kg\nheptachlor (0,8 – 50) μg/kg\naldryna (0,1 – 50) μg/kg\nepoksyd heptachloru (0,1 – 50) μg/kg\nγ-chlordan (0,1 – 50) μg/kg\nendosulfan I (0,5 – 50) μg/kg\nα-chlordan (0,1 – 50) μg/kg\ndieldryna (0,1 – 100) μg/kg\np,p’-DDE (0,1 – 100) μg/kg\nendryna (0,3 – 100) μg/kg\nendosulfan II (0,3 – 100) μg/kg\np,p’-DDD (0,1 – 100) μg/kg\naldehyd endryny (0,1 – 100) μg/kg\nsiarczan endodsulfanu (0,5 – 100) μg/kg\np,p’-DDT (0,5 – 100) μg/kg\nketon endryny (0,1 – 100) μg/kg\nmetoksychlor (5,0 – 500) μg/kg\nPCB 28 (0,1 – 50) μg/kg\nPCB 52 (0,1 – 50) μg/kg\nPCB 101 (0,1 – 50) μg/kg\nPCB 118 (0,1 – 50) μg/kg\nPCB 153 (0,1 – 50) μg/kg\nPCB 138 (0,1 – 50) μg/kg\nPCB 180 (0,1 – 50) μg/kg\nMetoda chromatografii gazowej z detekcją wychwytu elektronów (GC-ECD)","reference":"PB-32 edycja 11 z dnia 20.01.2020 r.","norm_bases":["PB-32 edycja 11 z dnia 20.01.2020 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Chromatografii","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Gleba, osady denne, skały Zawartość pestycydów chloroorganicznych oraz polichlorowanych bifenyli\nZakres:\nα-HCH (0,5 – 50) μg/kg\nheksachlorobenzen (0,1 – 50) μg/kg\nβ-HCH (0,5 – 50) μg/kg\nγ-HCH (0,5 – 50) μg/kg\nδ-HCH (0,5 – 50) μg/kg\nheptachlor (0,8 – 50) μg/kg\naldryna (0,1 – 50) μg/kg\nepoksyd heptachloru (0,1 – 50) μg/kg\nγ-chlordan (0,1 – 50) μg/kg\nendosulfan I (0,5 – 50) μg/kg\nα-chlordan (0,1 – 50) μg/kg\ndieldryna (0,1 – 100) μg/kg\np,p’-DDE (0,1 – 100) μg/kg\nendryna (0,3 – 100) μg/kg\nendosulfan II (0,3 – 100) μg/kg\np,p’-DDD (0,1 – 100) μg/kg\naldehyd endryny (0,1 – 100) μg/kg\nsiarczan endodsulfanu (0,5 – 100) μg/kg\np,p’-DDT (0,5 – 100) μg/kg\nketon endryny (0,1 – 100) μg/kg\nmetoksychlor (5,0 – 500) μg/kg\nPCB 28 (0,1 – 50) μg/kg\nPCB 52 (0,1 – 50) μg/kg\nPCB 101 (0,1 – 50) μg/kg\nPCB 118 (0,1 – 50) μg/kg\nPCB 153 (0,1 – 50) μg/kg\nPCB 138 (0,1 – 50) μg/kg\nPCB 180 (0,1 – 50) μg/kg\nMetoda chromatografii gazowej z detekcją wychwytu elektronów (GC-ECD) PB-32 edycja 11 z dnia 20.01.2020 r. Gleba, osady denne, skaly Zawartosc pestycydow chloroorganicznych oraz polichlorowanych bifenyli\nZakres:\nα-HCH (0,5 – 50) μg/kg\nheksachlorobenzen (0,1 – 50) μg/kg\nβ-HCH (0,5 – 50) μg/kg\nγ-HCH (0,5 – 50) μg/kg\nδ-HCH (0,5 – 50) μg/kg\nheptachlor (0,8 – 50) μg/kg\naldryna (0,1 – 50) μg/kg\nepoksyd heptachloru (0,1 – 50) μg/kg\nγ-chlordan (0,1 – 50) μg/kg\nendosulfan I (0,5 – 50) μg/kg\nα-chlordan (0,1 – 50) μg/kg\ndieldryna (0,1 – 100) μg/kg\np,p’-DDE (0,1 – 100) μg/kg\nendryna (0,3 – 100) μg/kg\nendosulfan II (0,3 – 100) μg/kg\np,p’-DDD (0,1 – 100) μg/kg\naldehyd endryny (0,1 – 100) μg/kg\nsiarczan endodsulfanu (0,5 – 100) μg/kg\np,p’-DDT (0,5 – 100) μg/kg\nketon endryny (0,1 – 100) μg/kg\nmetoksychlor (5,0 – 500) μg/kg\nPCB 28 (0,1 – 50) μg/kg\nPCB 52 (0,1 – 50) μg/kg\nPCB 101 (0,1 – 50) μg/kg\nPCB 118 (0,1 – 50) μg/kg\nPCB 153 (0,1 – 50) μg/kg\nPCB 138 (0,1 – 50) μg/kg\nPCB 180 (0,1 – 50) μg/kg\nMetoda chromatografii gazowej z detekcja wychwytu elektronow (GC-ECD) PB-32 edycja 11 z dnia 20.01.2020 r.","categories":["water","environment"],"row_index":29,"parse_version":4,"parse_source":"agent-claude-code","parameters_en":[{"name":"α-HCH","range":"(0,5 – 50) μg/kg"},{"name":"hexachlorobenzene","range":"(0,1 – 50) μg/kg"},{"name":"β-HCH","range":"(0,5 – 50) μg/kg"},{"name":"γ-HCH","range":"(0,5 – 50) μg/kg"},{"name":"δ-HCH","range":"(0,5 – 50) μg/kg"},{"name":"heptachlor","range":"(0,8 – 50) μg/kg"},{"name":"aldrin","range":"(0,1 – 50) μg/kg"},{"name":"heptachlor epoxide","range":"(0,1 – 50) μg/kg"},{"name":"γ-chlordane","range":"(0,1 – 50) μg/kg"},{"name":"endosulfan I","range":"(0,5 – 50) μg/kg"},{"name":"α-chlordane","range":"(0,1 – 50) μg/kg"},{"name":"dieldrin","range":"(0,1 – 100) μg/kg"},{"name":"p,p’-DDE","range":"(0,1 – 100) μg/kg"},{"name":"endrin","range":"(0,3 – 100) μg/kg"},{"name":"endosulfan II","range":"(0,3 – 100) μg/kg"},{"name":"p,p’-DDD","range":"(0,1 – 100) μg/kg"},{"name":"endrin aldehyde","range":"(0,1 – 100) μg/kg"},{"name":"endosulfan sulphate","range":"(0,5 – 100) μg/kg"},{"name":"p,p’-DDT","range":"(0,5 – 100) μg/kg"},{"name":"endrin ketone","range":"(0,1 – 100) μg/kg"},{"name":"methoxychlor","range":"(5,0 – 500) μg/kg"},{"name":"PCB 28","range":"(0,1 – 50) μg/kg"},{"name":"PCB 52","range":"(0,1 – 50) μg/kg"},{"name":"PCB 101","range":"(0,1 – 50) μg/kg"},{"name":"PCB 118","range":"(0,1 – 50) μg/kg"},{"name":"PCB 153","range":"(0,1 – 50) μg/kg"},{"name":"PCB 138","range":"(0,1 – 50) μg/kg"},{"name":"PCB 180","range":"(0,1 – 50) μg/kg"}],"search_en":"Soil, bottom sediments, rocks Gas chromatography with electron capture detection (GC-ECD) α-HCH hexachlorobenzene β-HCH γ-HCH δ-HCH heptachlor aldrin heptachlor epoxide γ-chlordane endosulfan I α-chlordane dieldrin p,p’-DDE endrin endosulfan II p,p’-DDD endrin aldehyde endosulfan sulphate p,p’-DDT endrin ketone methoxychlor PCB 28 PCB 52 PCB 101 PCB 118 PCB 153 PCB 138 PCB 180 PB-32 edycja 11 z dnia 20.01.2020 r.","technique_en":"Gas chromatography with electron capture detection (GC-ECD)","test_object_en":"Soil, bottom sediments, rocks","search_zh":"土壤、底泥、岩石 气相色谱-电子捕获检测法（GC-ECD） α-六六六 六氯苯 β-六六六 γ-六六六（林丹） δ-六六六 七氯 艾氏剂 环氧七氯 硫丹 I 狄氏剂 p,p'-滴滴伊（DDE） 异狄氏剂 硫丹 II p,p'-滴滴滴（DDD） 异狄氏剂醛 p,p'-滴滴涕（DDT） 异狄氏剂酮 甲氧滴滴涕 PCB 28 PCB 52 PCB 101 PCB 118 PCB 153 PCB 138 PCB 180 PB-32 edycja 11 z dnia 20.01.2020 r.","technique_zh":"气相色谱-电子捕获检测法（GC-ECD）","parameters_zh":[{"name":"α-六六六","range":"(0,5 – 50) μg/kg"},{"name":"六氯苯","range":"(0,1 – 50) μg/kg"},{"name":"β-六六六","range":"(0,5 – 50) μg/kg"},{"name":"γ-六六六（林丹）","range":"(0,5 – 50) μg/kg"},{"name":"δ-六六六","range":"(0,5 – 50) μg/kg"},{"name":"七氯","range":"(0,8 – 50) μg/kg"},{"name":"艾氏剂","range":"(0,1 – 50) μg/kg"},{"name":"环氧七氯","range":"(0,1 – 50) μg/kg"},{"name":"γ-chlordan","range":"(0,1 – 50) μg/kg"},{"name":"硫丹 I","range":"(0,5 – 50) μg/kg"},{"name":"α-chlordan","range":"(0,1 – 50) μg/kg"},{"name":"狄氏剂","range":"(0,1 – 100) μg/kg"},{"name":"p,p'-滴滴伊（DDE）","range":"(0,1 – 100) μg/kg"},{"name":"异狄氏剂","range":"(0,3 – 100) μg/kg"},{"name":"硫丹 II","range":"(0,3 – 100) μg/kg"},{"name":"p,p'-滴滴滴（DDD）","range":"(0,1 – 100) μg/kg"},{"name":"异狄氏剂醛","range":"(0,1 – 100) μg/kg"},{"name":"siarczan endodsulfanu","range":"(0,5 – 100) μg/kg"},{"name":"p,p'-滴滴涕（DDT）","range":"(0,5 – 100) μg/kg"},{"name":"异狄氏剂酮","range":"(0,1 – 100) μg/kg"},{"name":"甲氧滴滴涕","range":"(5,0 – 500) μg/kg"},{"name":"PCB 28","range":"(0,1 – 50) μg/kg"},{"name":"PCB 52","range":"(0,1 – 50) μg/kg"},{"name":"PCB 101","range":"(0,1 – 50) μg/kg"},{"name":"PCB 118","range":"(0,1 – 50) μg/kg"},{"name":"PCB 153","range":"(0,1 – 50) μg/kg"},{"name":"PCB 138","range":"(0,1 – 50) μg/kg"},{"name":"PCB 180","range":"(0,1 – 50) μg/kg"}],"test_object_zh":"土壤、底泥、岩石"},{"_id":"6a832cec884ede9a1b2c5755","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Woda, gleba, osady denne, skały oraz materiały roślinne: trawy, mchy, porosty, grzyby, zioła; korzenie, bulwy, łodygi, kwiaty i owoce roślin użytkowych, w tym zboża i tytoń, oraz igły i liście drzew","methodology":"Zawartość Hg","parameters":[{"name":"woda","range":"0,10 μg/l – 5,00 mg/l"},{"name":"próbki stałe","range":"(0,001 – 25,0) mg/kg"}],"technique":"Metoda absorpcyjnej spektrometrii atomowej z techniką amalgamacji","techniques":["Metoda absorpcyjnej spektrometrii atomowej z techniką amalgamacji"],"computed":[],"activity":"Zawartość Hg\nZakres:\nwoda 0,10 μg/l – 5,00 mg/l\npróbki stałe (0,001 – 25,0) mg/kg\nMetoda absorpcyjnej spektrometrii atomowej z techniką amalgamacji","reference":"PB-06 edycja 12 z dnia 02.03.2026 r.","norm_bases":["PB-06 edycja 12 z dnia 02.03.2026 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Metod Instrumentalnych","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Woda, gleba, osady denne, skały oraz materiały roślinne: trawy, mchy, porosty, grzyby, zioła; korzenie, bulwy, łodygi, kwiaty i owoce roślin użytkowych, w tym zboża i tytoń, oraz igły i liście drzew Zawartość Hg\nZakres:\nwoda 0,10 μg/l – 5,00 mg/l\npróbki stałe (0,001 – 25,0) mg/kg\nMetoda absorpcyjnej spektrometrii atomowej z techniką amalgamacji PB-06 edycja 12 z dnia 02.03.2026 r. Woda, gleba, osady denne, skaly oraz materialy roslinne: trawy, mchy, porosty, grzyby, ziola; korzenie, bulwy, lodygi, kwiaty i owoce roslin uzytkowych, w tym zboza i tyton, oraz igly i liscie drzew Zawartosc Hg\nZakres:\nwoda 0,10 μg/l – 5,00 mg/l\nprobki stale (0,001 – 25,0) mg/kg\nMetoda absorpcyjnej spektrometrii atomowej z technika amalgamacji PB-06 edycja 12 z dnia 02.03.2026 r.","categories":["water","materials","environment","microbiology"],"row_index":30,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Hg content","parameters_en":[{"name":"water","range":"0,10 μg/l – 5,00 mg/l"},{"name":"solid samples","range":"(0,001 – 25,0) mg/kg"}],"search_en":"Water, soil, bottom sediments, rocks and plant materials: grasses, mosses, lichens, fungi, herbs; roots, tubers, stems, flowers and fruits of useful plants, including cereals and tobacco, and needles and leaves of trees Hg content Atomic absorption spectrometry with amalgamation technique water solid samples PB-06 edycja 12 z dnia 02.03.2026 r.","technique_en":"Atomic absorption spectrometry with amalgamation technique","test_object_en":"Water, soil, bottom sediments, rocks and plant materials: grasses, mosses, lichens, fungi, herbs; roots, tubers, stems, flowers and fruits of useful plants, including cereals and tobacco, and needles and leaves of trees","search_zh":"原子吸收光谱法（汞齐化技术） 水 PB-06 edycja 12 z dnia 02.03.2026 r.","technique_zh":"原子吸收光谱法（汞齐化技术）","parameters_zh":[{"name":"水","range":"0,10 μg/l – 5,00 mg/l"},{"name":"próbki stałe","range":"(0,001 – 25,0) mg/kg"}]},{"_id":"6a832cec884ede9a1b2c5756","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Gleba, osady denne","methodology":"Zawartość Hg","parameters":[{"name":"Zakres","range":"(0,02 – 50,0) mg/kg"}],"technique":"Metoda absorpcyjnej spektrometrii atomowej z generowaniem zimnych par rtęci (CVAAS)","techniques":["Metoda absorpcyjnej spektrometrii atomowej z generowaniem zimnych par rtęci (CVAAS)"],"computed":[],"activity":"Zawartość Hg\nZakres (0,02 – 50,0) mg/kg\nMetoda absorpcyjnej spektrometrii atomowej z generowaniem zimnych par rtęci (CVAAS)","reference":"PB-34 edycja 13 z dnia 02.03.2026 r.","norm_bases":["PB-34 edycja 13 z dnia 02.03.2026 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Metod Instrumentalnych","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Gleba, osady denne Zawartość Hg\nZakres (0,02 – 50,0) mg/kg\nMetoda absorpcyjnej spektrometrii atomowej z generowaniem zimnych par rtęci (CVAAS) PB-34 edycja 13 z dnia 02.03.2026 r. Gleba, osady denne Zawartosc Hg\nZakres (0,02 – 50,0) mg/kg\nMetoda absorpcyjnej spektrometrii atomowej z generowaniem zimnych par rteci (CVAAS) PB-34 edycja 13 z dnia 02.03.2026 r.","categories":["water","environment"],"row_index":31,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Hg content","parameters_en":[{"name":"Range","range":"(0,02 – 50,0) mg/kg"}],"search_en":"Soil, bottom sediments Hg content Mercury cold vapour atomic absorption spectrometry (CVAAS) Range PB-34 edycja 13 z dnia 02.03.2026 r.","technique_en":"Mercury cold vapour atomic absorption spectrometry (CVAAS)","test_object_en":"Soil, bottom sediments","parameters_zh":[{"name":"范围","range":"(0,02 – 50,0) mg/kg"}],"search_zh":"汞冷蒸气原子吸收光谱法（CVAAS） 范围 PB-34 edycja 13 z dnia 02.03.2026 r.","technique_zh":"汞冷蒸气原子吸收光谱法（CVAAS）"},{"_id":"6a832cec884ede9a1b2c5757","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Woda","methodology":"Stężenie pierwiastków","parameters":[{"name":"Ag","range":"(0,05 – 1000) μg/l"},{"name":"Al","range":"(0,5 – 1000) μg/l"},{"name":"As","range":"(2 – 1000) μg/l"},{"name":"B","range":"(5 – 1000) μg/l"},{"name":"Ba","range":"(0,05 – 1000) μg/l"},{"name":"Be","range":"(0,05 – 1000) μg/l"},{"name":"Cd","range":"(0,05 – 1000) μg/l"},{"name":"Co","range":"(0,05 – 1000) μg/l"},{"name":"Cr","range":"(2 – 1000) μg/l"},{"name":"Cu","range":"(0,05 – 1000) μg/l"},{"name":"Li","range":"(0,3 – 1000) μg/l"},{"name":"Mn","range":"(0,5 – 1000) μg/l"},{"name":"Mo","range":"(0,05 – 1000) μg/l"},{"name":"Ni","range":"(0,5 – 1000) μg/l"},{"name":"Pb","range":"(0,05 – 1000) μg/l"},{"name":"Sb","range":"(0,05 – 1000) μg/l"},{"name":"Se","range":"(2 – 1000) μg/l"},{"name":"Sn","range":"(0,5 – 1000) μg/l"},{"name":"Sr","range":"(0,1 – 1000) μg/l"},{"name":"Tl","range":"(0,05 – 1000) μg/l"},{"name":"U","range":"(0,05 – 1000) μg/l"},{"name":"V","range":"(1 – 1000) μg/l"},{"name":"Zn","range":"(1 – 1000) μg/l"}],"technique":"Metoda spektrometrii mas z jonizacją w plazmie indukcyjnie sprzężonej (ICP-MS)","techniques":["Metoda spektrometrii mas z jonizacją w plazmie indukcyjnie sprzężonej (ICP-MS)"],"computed":[],"activity":"Stężenie pierwiastków\nZakres:\nAg (0,05 – 1000) μg/l\nAl (0,5 – 1000) μg/l\nAs (2 – 1000) μg/l\nB (5 – 1000) μg/l\nBa (0,05 – 1000) μg/l\nBe (0,05 – 1000) μg/l\nCd (0,05 – 1000) μg/l\nCo (0,05 – 1000) μg/l\nCr (2 – 1000) μg/l\nCu (0,05 – 1000) μg/l\nLi (0,3 – 1000) μg/l\nMn (0,5 – 1000) μg/l\nMo (0,05 – 1000) μg/l\nNi (0,5 – 1000) μg/l\nPb (0,05 – 1000) μg/l\nSb (0,05 – 1000) μg/l\nSe (2 – 1000) μg/l\nSn (0,5 – 1000) μg/l\nSr (0,1 – 1000) μg/l\nTl (0,05 – 1000) μg/l\nU (0,05 – 1000) μg/l\nV (1 – 1000) μg/l\nZn (1 – 1000) μg/l\nMetoda spektrometrii mas z jonizacją w plazmie indukcyjnie sprzężonej (ICP-MS)","reference":"PB-37 edycja 13 z dnia 02.03.2026 r.","norm_bases":["PB-37 edycja 13 z dnia 02.03.2026 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Metod Instrumentalnych","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Woda Stężenie pierwiastków\nZakres:\nAg (0,05 – 1000) μg/l\nAl (0,5 – 1000) μg/l\nAs (2 – 1000) μg/l\nB (5 – 1000) μg/l\nBa (0,05 – 1000) μg/l\nBe (0,05 – 1000) μg/l\nCd (0,05 – 1000) μg/l\nCo (0,05 – 1000) μg/l\nCr (2 – 1000) μg/l\nCu (0,05 – 1000) μg/l\nLi (0,3 – 1000) μg/l\nMn (0,5 – 1000) μg/l\nMo (0,05 – 1000) μg/l\nNi (0,5 – 1000) μg/l\nPb (0,05 – 1000) μg/l\nSb (0,05 – 1000) μg/l\nSe (2 – 1000) μg/l\nSn (0,5 – 1000) μg/l\nSr (0,1 – 1000) μg/l\nTl (0,05 – 1000) μg/l\nU (0,05 – 1000) μg/l\nV (1 – 1000) μg/l\nZn (1 – 1000) μg/l\nMetoda spektrometrii mas z jonizacją w plazmie indukcyjnie sprzężonej (ICP-MS) PB-37 edycja 13 z dnia 02.03.2026 r. Woda Stezenie pierwiastkow\nZakres:\nAg (0,05 – 1000) μg/l\nAl (0,5 – 1000) μg/l\nAs (2 – 1000) μg/l\nB (5 – 1000) μg/l\nBa (0,05 – 1000) μg/l\nBe (0,05 – 1000) μg/l\nCd (0,05 – 1000) μg/l\nCo (0,05 – 1000) μg/l\nCr (2 – 1000) μg/l\nCu (0,05 – 1000) μg/l\nLi (0,3 – 1000) μg/l\nMn (0,5 – 1000) μg/l\nMo (0,05 – 1000) μg/l\nNi (0,5 – 1000) μg/l\nPb (0,05 – 1000) μg/l\nSb (0,05 – 1000) μg/l\nSe (2 – 1000) μg/l\nSn (0,5 – 1000) μg/l\nSr (0,1 – 1000) μg/l\nTl (0,05 – 1000) μg/l\nU (0,05 – 1000) μg/l\nV (1 – 1000) μg/l\nZn (1 – 1000) μg/l\nMetoda spektrometrii mas z jonizacja w plazmie indukcyjnie sprzezonej (ICP-MS) PB-37 edycja 13 z dnia 02.03.2026 r.","categories":["water"],"row_index":32,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Element concentration","parameters_en":[{"name":"Ag","range":"(0,05 – 1000) μg/l"},{"name":"Al","range":"(0,5 – 1000) μg/l"},{"name":"As","range":"(2 – 1000) μg/l"},{"name":"B","range":"(5 – 1000) μg/l"},{"name":"Ba","range":"(0,05 – 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mg/kg"},{"name":"P","range":"(0,002 – 0,5) %"},{"name":"Pb","range":"(2 – 1250) mg/kg"},{"name":"S","range":"(0,003 – 2,5) %"},{"name":"Sn","range":"(2 – 500) mg/kg"},{"name":"Sr","range":"(1 – 500) mg/kg"},{"name":"V","range":"(1 – 500) mg/kg"},{"name":"Zn","range":"(1 – 1250) mg/kg"}],"technique":"Metoda emisyjnej spektrometrii atomowej ze wzbudzeniem w plazmie indukcyjnie sprzężonej (ICP-OES)","techniques":["Metoda emisyjnej spektrometrii atomowej ze wzbudzeniem w plazmie indukcyjnie sprzężonej (ICP-OES)"],"computed":[],"activity":"Zawartość pierwiastków\nZakres:\nAs (3 – 500) mg/kg\nBa (1 – 1500) mg/kg\nCa (0,01 – 10) %\nCd (0,5 – 250) mg/kg\nCo (1 – 500) mg/kg\nCr (1 – 500) mg/kg\nCu (1 – 500) mg/kg\nFe (0,01 – 10) %\nMg (0,01 – 2,5) %\nMn (2 – 5000) mg/kg\nMo (0,5 – 500) mg/kg\nNi (1 – 500) mg/kg\nP (0,002 – 0,5) %\nPb (2 – 1250) mg/kg\nS (0,003 – 2,5) %\nSn (2 – 500) mg/kg\nSr (1 – 500) mg/kg\nV (1 – 500) mg/kg\nZn (1 – 1250) mg/kg\nMetoda emisyjnej spektrometrii atomowej ze wzbudzeniem w plazmie indukcyjnie sprzężonej (ICP-OES)","reference":"PB-40 edycja 8 z dnia 02.03.2026 r.","norm_bases":["PB-40 edycja 8 z dnia 02.03.2026 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Metod Instrumentalnych","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Gleba, grunty, osady denne Zawartość pierwiastków\nZakres:\nAs (3 – 500) mg/kg\nBa (1 – 1500) mg/kg\nCa (0,01 – 10) %\nCd (0,5 – 250) mg/kg\nCo (1 – 500) mg/kg\nCr (1 – 500) mg/kg\nCu (1 – 500) mg/kg\nFe (0,01 – 10) %\nMg (0,01 – 2,5) %\nMn (2 – 5000) mg/kg\nMo (0,5 – 500) mg/kg\nNi (1 – 500) mg/kg\nP (0,002 – 0,5) %\nPb (2 – 1250) mg/kg\nS (0,003 – 2,5) %\nSn (2 – 500) mg/kg\nSr (1 – 500) mg/kg\nV (1 – 500) mg/kg\nZn (1 – 1250) mg/kg\nMetoda emisyjnej spektrometrii atomowej ze wzbudzeniem w plazmie indukcyjnie sprzężonej (ICP-OES) PB-40 edycja 8 z dnia 02.03.2026 r. Gleba, grunty, osady denne Zawartosc pierwiastkow\nZakres:\nAs (3 – 500) mg/kg\nBa (1 – 1500) mg/kg\nCa (0,01 – 10) %\nCd (0,5 – 250) mg/kg\nCo (1 – 500) mg/kg\nCr (1 – 500) mg/kg\nCu (1 – 500) mg/kg\nFe (0,01 – 10) %\nMg (0,01 – 2,5) %\nMn (2 – 5000) mg/kg\nMo (0,5 – 500) mg/kg\nNi (1 – 500) mg/kg\nP (0,002 – 0,5) %\nPb (2 – 1250) mg/kg\nS (0,003 – 2,5) %\nSn (2 – 500) mg/kg\nSr (1 – 500) mg/kg\nV (1 – 500) mg/kg\nZn (1 – 1250) mg/kg\nMetoda emisyjnej spektrometrii atomowej ze wzbudzeniem w plazmie indukcyjnie sprzezonej (ICP-OES) PB-40 edycja 8 z dnia 02.03.2026 r.","categories":["water","environment"],"row_index":33,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Element content","parameters_en":[{"name":"As","range":"(3 – 500) mg/kg"},{"name":"Ba","range":"(1 – 1500) mg/kg"},{"name":"Ca","range":"(0,01 – 10) %"},{"name":"Cd","range":"(0,5 – 250) mg/kg"},{"name":"Co","range":"(1 – 500) mg/kg"},{"name":"Cr","range":"(1 – 500) mg/kg"},{"name":"Cu","range":"(1 – 500) mg/kg"},{"name":"Fe","range":"(0,01 – 10) %"},{"name":"Mg","range":"(0,01 – 2,5) %"},{"name":"Mn","range":"(2 – 5000) mg/kg"},{"name":"Mo","range":"(0,5 – 500) mg/kg"},{"name":"Ni","range":"(1 – 500) mg/kg"},{"name":"P","range":"(0,002 – 0,5) %"},{"name":"Pb","range":"(2 – 1250) mg/kg"},{"name":"S","range":"(0,003 – 2,5) %"},{"name":"Sn","range":"(2 – 500) mg/kg"},{"name":"Sr","range":"(1 – 500) mg/kg"},{"name":"V","range":"(1 – 500) mg/kg"},{"name":"Zn","range":"(1 – 1250) mg/kg"}],"search_en":"Soil, ground, bottom sediments Element content Inductively coupled plasma optical emission spectrometry (ICP-OES) As Ba Ca Cd Co Cr Cu Fe Mg Mn Mo Ni P Pb S Sn Sr V Zn PB-40 edycja 8 z dnia 02.03.2026 r.","technique_en":"Inductively coupled plasma optical emission spectrometry (ICP-OES)","test_object_en":"Soil, ground, bottom sediments","methodology_zh":"元素含量","parameters_zh":[{"name":"As","range":"(3 – 500) mg/kg"},{"name":"Ba","range":"(1 – 1500) mg/kg"},{"name":"Ca","range":"(0,01 – 10) %"},{"name":"Cd","range":"(0,5 – 250) mg/kg"},{"name":"Co","range":"(1 – 500) mg/kg"},{"name":"Cr","range":"(1 – 500) mg/kg"},{"name":"Cu","range":"(1 – 500) mg/kg"},{"name":"Fe","range":"(0,01 – 10) %"},{"name":"Mg","range":"(0,01 – 2,5) %"},{"name":"Mn","range":"(2 – 5000) mg/kg"},{"name":"Mo","range":"(0,5 – 500) mg/kg"},{"name":"Ni","range":"(1 – 500) mg/kg"},{"name":"P","range":"(0,002 – 0,5) %"},{"name":"Pb","range":"(2 – 1250) mg/kg"},{"name":"S","range":"(0,003 – 2,5) %"},{"name":"Sn","range":"(2 – 500) mg/kg"},{"name":"Sr","range":"(1 – 500) mg/kg"},{"name":"V","range":"(1 – 500) mg/kg"},{"name":"Zn","range":"(1 – 1250) mg/kg"}],"search_zh":"元素含量 电感耦合等离子体原子发射光谱法（ICP-OES） As Ba Ca Cd Co Cr Cu Fe Mg Mn Mo Ni P Pb S Sn Sr V Zn PB-40 edycja 8 z dnia 02.03.2026 r.","technique_zh":"电感耦合等离子体原子发射光谱法（ICP-OES）"},{"_id":"6a832cec884ede9a1b2c5759","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Gleba, osady denne, skały","methodology":"Zawartość pierwiastków śladowych (próbki proszkowe prasowane)","parameters":[{"name":"As","range":"(3 – 700) ppm"},{"name":"Ba","range":"(10 – 4000) ppm"},{"name":"Bi","range":"(3 – 250) ppm"},{"name":"Br","range":"(1 – 200) ppm"},{"name":"Ce","range":"(5 – 600) ppm"},{"name":"Co","range":"(3 – 150) ppm"},{"name":"Cr","range":"(5 – 4000) ppm"},{"name":"Cu","range":"(5 – 3000) ppm"},{"name":"Ga","range":"(3 – 100) ppm"},{"name":"Hf","range":"(3 – 30) ppm"},{"name":"La","range":"(5 – 400) ppm"},{"name":"Mo","range":"(2 – 150) ppm"},{"name":"Nb","range":"(2 – 300) ppm"},{"name":"Ni","range":"(3 – 3000) ppm"},{"name":"Pb","range":"(3 – 6000) ppm"},{"name":"Rb","range":"(3 – 4000) ppm"},{"name":"Sr","range":"(2 – 1500) ppm"},{"name":"Th","range":"(3 – 160) ppm"},{"name":"U","range":"(2 – 100) ppm"},{"name":"V","range":"(5 – 1000) ppm"},{"name":"Y","range":"(3 – 150) ppm"},{"name":"Zn","range":"(2 – 8000) ppm"},{"name":"Zr","range":"(2 – 900) ppm"}],"technique":"Metoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF)","techniques":["Metoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF)"],"computed":[],"activity":"Zawartość pierwiastków śladowych (próbki proszkowe prasowane)\nZakres:\nAs (3 – 700) ppm\nBa (10 – 4000) ppm\nBi (3 – 250) ppm\nBr (1 – 200) ppm\nCe (5 – 600) ppm\nCo (3 – 150) ppm\nCr (5 – 4000) ppm\nCu (5 – 3000) ppm\nGa (3 – 100) ppm\nHf (3 – 30) ppm\nLa (5 – 400) ppm\nMo (2 – 150) ppm\nNb (2 – 300) ppm\nNi (3 – 3000) ppm\nPb (3 – 6000) ppm\nRb (3 – 4000) ppm\nSr (2 – 1500) ppm\nTh (3 – 160) ppm\nU (2 – 100) ppm\nV (5 – 1000) ppm\nY (3 – 150) ppm\nZn (2 – 8000) ppm\nZr (2 – 900) ppm\nMetoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF)","reference":"PB-29 edycja 10 z dnia 20.01.2020 r.","norm_bases":["PB-29 edycja 10 z dnia 20.01.2020 r."],"lab_section":"Laboratorium Chemiczne; 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Gleba, osady denne, skaly Zawartosc pierwiastkow sladowych (probki proszkowe prasowane)\nZakres:\nAs (3 – 700) ppm\nBa (10 – 4000) ppm\nBi (3 – 250) ppm\nBr (1 – 200) ppm\nCe (5 – 600) ppm\nCo (3 – 150) ppm\nCr (5 – 4000) ppm\nCu (5 – 3000) ppm\nGa (3 – 100) ppm\nHf (3 – 30) ppm\nLa (5 – 400) ppm\nMo (2 – 150) ppm\nNb (2 – 300) ppm\nNi (3 – 3000) ppm\nPb (3 – 6000) ppm\nRb (3 – 4000) ppm\nSr (2 – 1500) ppm\nTh (3 – 160) ppm\nU (2 – 100) ppm\nV (5 – 1000) ppm\nY (3 – 150) ppm\nZn (2 – 8000) ppm\nZr (2 – 900) ppm\nMetoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersja fali (WD-XRF) PB-29 edycja 10 z dnia 20.01.2020 r.","categories":["water","environment"],"row_index":34,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Content of trace elements (pressed powder samples)","parameters_en":[{"name":"As","range":"(3 – 700) ppm"},{"name":"Ba","range":"(10 – 4000) ppm"},{"name":"Bi","range":"(3 – 250) ppm"},{"name":"Br","range":"(1 – 200) ppm"},{"name":"Ce","range":"(5 – 600) ppm"},{"name":"Co","range":"(3 – 150) ppm"},{"name":"Cr","range":"(5 – 4000) ppm"},{"name":"Cu","range":"(5 – 3000) ppm"},{"name":"Ga","range":"(3 – 100) ppm"},{"name":"Hf","range":"(3 – 30) ppm"},{"name":"La","range":"(5 – 400) ppm"},{"name":"Mo","range":"(2 – 150) ppm"},{"name":"Nb","range":"(2 – 300) ppm"},{"name":"Ni","range":"(3 – 3000) ppm"},{"name":"Pb","range":"(3 – 6000) ppm"},{"name":"Rb","range":"(3 – 4000) ppm"},{"name":"Sr","range":"(2 – 1500) ppm"},{"name":"Th","range":"(3 – 160) ppm"},{"name":"U","range":"(2 – 100) ppm"},{"name":"V","range":"(5 – 1000) ppm"},{"name":"Y","range":"(3 – 150) ppm"},{"name":"Zn","range":"(2 – 8000) ppm"},{"name":"Zr","range":"(2 – 900) ppm"}],"search_en":"Soil, bottom sediments, rocks Content of trace elements (pressed powder samples) Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF) As Ba Bi Br Ce Co Cr Cu Ga Hf La Mo Nb Ni Pb Rb Sr Th U V Y Zn Zr PB-29 edycja 10 z dnia 20.01.2020 r.","technique_en":"Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF)","test_object_en":"Soil, bottom sediments, rocks","parameters_zh":[{"name":"As","range":"(3 – 700) ppm"},{"name":"Ba","range":"(10 – 4000) ppm"},{"name":"Bi","range":"(3 – 250) ppm"},{"name":"Br","range":"(1 – 200) ppm"},{"name":"Ce","range":"(5 – 600) ppm"},{"name":"Co","range":"(3 – 150) ppm"},{"name":"Cr","range":"(5 – 4000) ppm"},{"name":"Cu","range":"(5 – 3000) ppm"},{"name":"Ga","range":"(3 – 100) ppm"},{"name":"Hf","range":"(3 – 30) ppm"},{"name":"La","range":"(5 – 400) ppm"},{"name":"Mo","range":"(2 – 150) ppm"},{"name":"Nb","range":"(2 – 300) ppm"},{"name":"Ni","range":"(3 – 3000) ppm"},{"name":"Pb","range":"(3 – 6000) ppm"},{"name":"Rb","range":"(3 – 4000) ppm"},{"name":"Sr","range":"(2 – 1500) ppm"},{"name":"Th","range":"(3 – 160) ppm"},{"name":"U","range":"(2 – 100) ppm"},{"name":"V","range":"(5 – 1000) ppm"},{"name":"Y","range":"(3 – 150) ppm"},{"name":"Zn","range":"(2 – 8000) ppm"},{"name":"Zr","range":"(2 – 900) ppm"}],"search_zh":"土壤、底泥、岩石 波长色散 X 射线荧光光谱法（WD-XRF） As Ba Co Cr Cu Mo Ni Pb Sr V Zn PB-29 edycja 10 z dnia 20.01.2020 r.","technique_zh":"波长色散 X 射线荧光光谱法（WD-XRF）","test_object_zh":"土壤、底泥、岩石"},{"_id":"6a832cec884ede9a1b2c575a","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Gleba, osady denne, skały","methodology":"Skład główny (próbki stapiane)","parameters":[{"name":"SiO2","range":"(0,10 – 100) %"},{"name":"Al2O3","range":"(0,05 – 70) %"},{"name":"TiO2","range":"(0,010 – 4) %"},{"name":"MnO","range":"(0,001 – 4) %"},{"name":"Fe2O3","range":"(0,01 – 85) %"},{"name":"K2O","range":"(0,01 – 20) %"},{"name":"Na2O","range":"(0,01 – 10) %"},{"name":"CaO","range":"(0,01 – 60) %"},{"name":"MgO","range":"(0,01 – 55) %"},{"name":"P2O5","range":"(0,001 – 40) %"},{"name":"SO3","range":"(0,01 – 65) %"},{"name":"Cl","range":"(0,001 – 40) %"},{"name":"F","range":"(0,01 – 40) %"}],"technique":"Metoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF)","techniques":["Metoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF)"],"computed":[],"activity":"Skład główny (próbki stapiane)\nZakres:\nSiO2 (0,10 – 100) %\nAl2O3 (0,05 – 70) %\nTiO2 (0,010 – 4) %\nMnO (0,001 – 4) %\nFe2O3 (0,01 – 85) %\nK2O (0,01 – 20) %\nNa2O (0,01 – 10) %\nCaO (0,01 – 60) %\nMgO (0,01 – 55) %\nP2O5 (0,001 – 40) %\nSO3 (0,01 – 65) %\nCl (0,001 – 40) %\nF (0,01 – 40) %\nMetoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF)","reference":"PB-33 edycja 10 z dnia 03.03.2025 r.","norm_bases":["PB-33 edycja 10 z dnia 03.03.2025 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Metod Instrumentalnych","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Gleba, osady denne, skały Skład główny (próbki stapiane)\nZakres:\nSiO2 (0,10 – 100) %\nAl2O3 (0,05 – 70) %\nTiO2 (0,010 – 4) %\nMnO (0,001 – 4) %\nFe2O3 (0,01 – 85) %\nK2O (0,01 – 20) %\nNa2O (0,01 – 10) %\nCaO (0,01 – 60) %\nMgO (0,01 – 55) %\nP2O5 (0,001 – 40) %\nSO3 (0,01 – 65) %\nCl (0,001 – 40) %\nF (0,01 – 40) %\nMetoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF) PB-33 edycja 10 z dnia 03.03.2025 r. Gleba, osady denne, skaly Sklad glowny (probki stapiane)\nZakres:\nSiO2 (0,10 – 100) %\nAl2O3 (0,05 – 70) %\nTiO2 (0,010 – 4) %\nMnO (0,001 – 4) %\nFe2O3 (0,01 – 85) %\nK2O (0,01 – 20) %\nNa2O (0,01 – 10) %\nCaO (0,01 – 60) %\nMgO (0,01 – 55) %\nP2O5 (0,001 – 40) %\nSO3 (0,01 – 65) %\nCl (0,001 – 40) %\nF (0,01 – 40) %\nMetoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersja fali (WD-XRF) PB-33 edycja 10 z dnia 03.03.2025 r.","categories":["water","environment"],"row_index":35,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Major composition (fused samples)","parameters_en":[{"name":"SiO2","range":"(0,10 – 100) %"},{"name":"Al2O3","range":"(0,05 – 70) %"},{"name":"TiO2","range":"(0,010 – 4) %"},{"name":"MnO","range":"(0,001 – 4) %"},{"name":"Fe2O3","range":"(0,01 – 85) %"},{"name":"K2O","range":"(0,01 – 20) %"},{"name":"Na2O","range":"(0,01 – 10) %"},{"name":"CaO","range":"(0,01 – 60) %"},{"name":"MgO","range":"(0,01 – 55) %"},{"name":"P2O5","range":"(0,001 – 40) %"},{"name":"SO3","range":"(0,01 – 65) %"},{"name":"Cl","range":"(0,001 – 40) %"},{"name":"F","range":"(0,01 – 40) %"}],"search_en":"Soil, bottom sediments, rocks Major composition (fused samples) Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF) SiO2 Al2O3 TiO2 MnO Fe2O3 K2O Na2O CaO MgO P2O5 SO3 Cl F PB-33 edycja 10 z dnia 03.03.2025 r.","technique_en":"Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF)","test_object_en":"Soil, bottom sediments, rocks","parameters_zh":[{"name":"SiO2","range":"(0,10 – 100) %"},{"name":"Al2O3","range":"(0,05 – 70) %"},{"name":"TiO2","range":"(0,010 – 4) %"},{"name":"MnO","range":"(0,001 – 4) %"},{"name":"Fe2O3","range":"(0,01 – 85) %"},{"name":"K2O","range":"(0,01 – 20) %"},{"name":"Na2O","range":"(0,01 – 10) %"},{"name":"CaO","range":"(0,01 – 60) %"},{"name":"MgO","range":"(0,01 – 55) %"},{"name":"P2O5","range":"(0,001 – 40) %"},{"name":"SO3","range":"(0,01 – 65) %"},{"name":"Cl","range":"(0,001 – 40) %"},{"name":"F","range":"(0,01 – 40) %"}],"search_zh":"土壤、底泥、岩石 波长色散 X 射线荧光光谱法（WD-XRF） SiO2 Al2O3 TiO2 MnO Fe2O3 K2O Na2O CaO MgO P2O5 PB-33 edycja 10 z dnia 03.03.2025 r.","technique_zh":"波长色散 X 射线荧光光谱法（WD-XRF）","test_object_zh":"土壤、底泥、岩石"},{"_id":"6a832cec884ede9a1b2c575b","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Gleba, osady denne, skały","methodology":"Skład główny (próbki stapiane)","parameters":[{"name":"Al2O3","range":"(0,05 – 70) %"},{"name":"CaO","range":"(0,01 – 60) %"},{"name":"Fe2O3","range":"(0,01 – 85) %"},{"name":"K2O","range":"(0,01 – 15) %"},{"name":"MgO","range":"(0,01 – 55) %"},{"name":"MnO","range":"(0,001 – 4) %"},{"name":"Na2O","range":"(0,02 – 10) %"},{"name":"P2O5","range":"(0,002 – 40) %"},{"name":"SO3","range":"(0,01 – 60) %"},{"name":"SiO2","range":"(0,10 – 100) %"},{"name":"TiO2","range":"(0,01 – 4) %"},{"name":"F","range":"(0,01 – 40) %"}],"technique":"Metoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF)","techniques":["Metoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF)"],"computed":[],"activity":"Skład główny (próbki stapiane)\nZakres:\nAl2O3 (0,05 – 70) %\nCaO (0,01 – 60) %\nFe2O3 (0,01 – 85) %\nK2O (0,01 – 15) %\nMgO (0,01 – 55) %\nMnO (0,001 – 4) %\nNa2O (0,02 – 10) %\nP2O5 (0,002 – 40) %\nSO3 (0,01 – 60) %\nSiO2 (0,10 – 100) %\nTiO2 (0,01 – 4) %\nF (0,01 – 40) %\nMetoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF)","reference":"PB-50 edycja 1 z dnia 02.03.2026 r.","norm_bases":["PB-50 edycja 1 z dnia 02.03.2026 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Metod Instrumentalnych","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Gleba, osady denne, skały Skład główny (próbki stapiane)\nZakres:\nAl2O3 (0,05 – 70) %\nCaO (0,01 – 60) %\nFe2O3 (0,01 – 85) %\nK2O (0,01 – 15) %\nMgO (0,01 – 55) %\nMnO (0,001 – 4) %\nNa2O (0,02 – 10) %\nP2O5 (0,002 – 40) %\nSO3 (0,01 – 60) %\nSiO2 (0,10 – 100) %\nTiO2 (0,01 – 4) %\nF (0,01 – 40) %\nMetoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersją fali (WD-XRF) PB-50 edycja 1 z dnia 02.03.2026 r. Gleba, osady denne, skaly Sklad glowny (probki stapiane)\nZakres:\nAl2O3 (0,05 – 70) %\nCaO (0,01 – 60) %\nFe2O3 (0,01 – 85) %\nK2O (0,01 – 15) %\nMgO (0,01 – 55) %\nMnO (0,001 – 4) %\nNa2O (0,02 – 10) %\nP2O5 (0,002 – 40) %\nSO3 (0,01 – 60) %\nSiO2 (0,10 – 100) %\nTiO2 (0,01 – 4) %\nF (0,01 – 40) %\nMetoda fluorescencyjnej spektrometrii rentgenowskiej z dyspersja fali (WD-XRF) PB-50 edycja 1 z dnia 02.03.2026 r.","categories":["water","environment"],"row_index":36,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Major composition (fused samples)","parameters_en":[{"name":"Al2O3","range":"(0,05 – 70) %"},{"name":"CaO","range":"(0,01 – 60) %"},{"name":"Fe2O3","range":"(0,01 – 85) %"},{"name":"K2O","range":"(0,01 – 15) %"},{"name":"MgO","range":"(0,01 – 55) %"},{"name":"MnO","range":"(0,001 – 4) %"},{"name":"Na2O","range":"(0,02 – 10) %"},{"name":"P2O5","range":"(0,002 – 40) %"},{"name":"SO3","range":"(0,01 – 60) %"},{"name":"SiO2","range":"(0,10 – 100) %"},{"name":"TiO2","range":"(0,01 – 4) %"},{"name":"F","range":"(0,01 – 40) %"}],"search_en":"Soil, bottom sediments, rocks Major composition (fused samples) Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF) Al2O3 CaO Fe2O3 K2O MgO MnO Na2O P2O5 SO3 SiO2 TiO2 F PB-50 edycja 1 z dnia 02.03.2026 r.","technique_en":"Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF)","test_object_en":"Soil, bottom sediments, rocks","parameters_zh":[{"name":"Al2O3","range":"(0,05 – 70) %"},{"name":"CaO","range":"(0,01 – 60) %"},{"name":"Fe2O3","range":"(0,01 – 85) %"},{"name":"K2O","range":"(0,01 – 15) %"},{"name":"MgO","range":"(0,01 – 55) %"},{"name":"MnO","range":"(0,001 – 4) %"},{"name":"Na2O","range":"(0,02 – 10) %"},{"name":"P2O5","range":"(0,002 – 40) %"},{"name":"SO3","range":"(0,01 – 60) %"},{"name":"SiO2","range":"(0,10 – 100) %"},{"name":"TiO2","range":"(0,01 – 4) %"},{"name":"F","range":"(0,01 – 40) %"}],"search_zh":"土壤、底泥、岩石 波长色散 X 射线荧光光谱法（WD-XRF） Al2O3 CaO Fe2O3 K2O MgO MnO Na2O P2O5 SiO2 TiO2 PB-50 edycja 1 z dnia 02.03.2026 r.","technique_zh":"波长色散 X 射线荧光光谱法（WD-XRF）","test_object_zh":"土壤、底泥、岩石"},{"_id":"6a832cec884ede9a1b2c575c","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Woda","methodology":"Stężenie pierwiastków","parameters":[{"name":"Al","range":"(0,01 – 20) mg/l"},{"name":"As","range":"(0,01 – 20) mg/l"},{"name":"B","range":"(0,01 – 20) mg/l"},{"name":"Ba","range":"(0,001 – 20) mg/l"},{"name":"Ca","range":"(0,1 – 1000) mg/l"},{"name":"Cd","range":"(0,001 – 20) mg/l"},{"name":"Co","range":"(0,002 – 20) mg/l"},{"name":"Cr","range":"(0,003 – 20) mg/l"},{"name":"Cu","range":"(0,002 – 20) mg/l"},{"name":"Fe","range":"(0,01 – 100) mg/l"},{"name":"K","range":"(0,5 – 1000) mg/l"},{"name":"Li","range":"(0,01 – 20) mg/l"},{"name":"Mg","range":"(0,1 – 500) mg/l"},{"name":"Mn","range":"(0,001 – 20) mg/l"},{"name":"Mo","range":"(0,003 – 20) mg/l"},{"name":"Na","range":"(0,5 – 2000) mg/l"},{"name":"Ni","range":"(0,005 – 20) mg/l"},{"name":"P","range":"(0,05 – 100) mg/l"},{"name":"Pb","range":"(0,01 – 20) mg/l"},{"name":"Si (jako SiO2)","range":"(0,1 – 100) mg/l"},{"name":"Sr","range":"(0,002 – 20) mg/l"},{"name":"Ti","range":"(0,002 – 20) mg/l"},{"name":"V","range":"(0,002 – 20) mg/l"},{"name":"Zn","range":"(0,003 – 20) mg/l"}],"technique":"Metoda emisyjnej spektrometrii atomowej ze wzbudzeniem w plazmie indukcyjnie sprzężonej (ICP-OES)","techniques":["Metoda emisyjnej spektrometrii atomowej ze wzbudzeniem w plazmie indukcyjnie sprzężonej (ICP-OES)"],"computed":[],"activity":"Stężenie pierwiastków\nZakres:\nAl (0,01 – 20) mg/l\nAs (0,01 – 20) mg/l\nB (0,01 – 20) mg/l\nBa (0,001 – 20) mg/l\nCa (0,1 – 1000) mg/l\nCd (0,001 – 20) mg/l\nCo (0,002 – 20) mg/l\nCr (0,003 – 20) mg/l\nCu (0,002 – 20) mg/l\nFe (0,01 – 100) mg/l\nK (0,5 – 1000) mg/l\nLi (0,01 – 20) mg/l\nMg (0,1 – 500) mg/l\nMn (0,001 – 20) mg/l\nMo (0,003 – 20) mg/l\nNa (0,5 – 2000) mg/l\nNi (0,005 – 20) mg/l\nP (0,05 – 100) mg/l\nPb (0,01 – 20) mg/l\nSi (jako SiO2) (0,1 – 100) mg/l\nSr (0,002 – 20) mg/l\nTi (0,002 – 20) mg/l\nV (0,002 – 20) mg/l\nZn (0,003 – 20) mg/l\nMetoda emisyjnej spektrometrii atomowej ze wzbudzeniem w plazmie indukcyjnie sprzężonej (ICP-OES)","reference":"PB-42 edycja 7 z dnia 02.03.2026 r.","norm_bases":["PB-42 edycja 7 z dnia 02.03.2026 r."],"lab_section":"Laboratorium Chemiczne; Pracownia Metod Instrumentalnych","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Woda Stężenie pierwiastków\nZakres:\nAl (0,01 – 20) mg/l\nAs (0,01 – 20) mg/l\nB (0,01 – 20) mg/l\nBa (0,001 – 20) mg/l\nCa (0,1 – 1000) mg/l\nCd (0,001 – 20) mg/l\nCo (0,002 – 20) mg/l\nCr (0,003 – 20) mg/l\nCu (0,002 – 20) mg/l\nFe (0,01 – 100) mg/l\nK (0,5 – 1000) mg/l\nLi (0,01 – 20) mg/l\nMg (0,1 – 500) mg/l\nMn (0,001 – 20) mg/l\nMo (0,003 – 20) mg/l\nNa (0,5 – 2000) mg/l\nNi (0,005 – 20) mg/l\nP (0,05 – 100) mg/l\nPb (0,01 – 20) mg/l\nSi (jako SiO2) (0,1 – 100) mg/l\nSr (0,002 – 20) mg/l\nTi (0,002 – 20) mg/l\nV (0,002 – 20) mg/l\nZn (0,003 – 20) mg/l\nMetoda emisyjnej spektrometrii atomowej ze wzbudzeniem w plazmie indukcyjnie sprzężonej (ICP-OES) PB-42 edycja 7 z dnia 02.03.2026 r. Woda Stezenie pierwiastkow\nZakres:\nAl (0,01 – 20) mg/l\nAs (0,01 – 20) mg/l\nB (0,01 – 20) mg/l\nBa (0,001 – 20) mg/l\nCa (0,1 – 1000) mg/l\nCd (0,001 – 20) mg/l\nCo (0,002 – 20) mg/l\nCr (0,003 – 20) mg/l\nCu (0,002 – 20) mg/l\nFe (0,01 – 100) mg/l\nK (0,5 – 1000) mg/l\nLi (0,01 – 20) mg/l\nMg (0,1 – 500) mg/l\nMn (0,001 – 20) mg/l\nMo (0,003 – 20) mg/l\nNa (0,5 – 2000) mg/l\nNi (0,005 – 20) mg/l\nP (0,05 – 100) mg/l\nPb (0,01 – 20) mg/l\nSi (jako SiO2) (0,1 – 100) mg/l\nSr (0,002 – 20) mg/l\nTi (0,002 – 20) mg/l\nV (0,002 – 20) mg/l\nZn (0,003 – 20) mg/l\nMetoda emisyjnej spektrometrii atomowej ze wzbudzeniem w plazmie indukcyjnie sprzezonej (ICP-OES) PB-42 edycja 7 z dnia 02.03.2026 r.","categories":["water"],"row_index":37,"parse_version":4,"parse_source":"agent-claude-code","methodology_en":"Element concentration","parameters_en":[{"name":"Al","range":"(0,01 – 20) mg/l"},{"name":"As","range":"(0,01 – 20) mg/l"},{"name":"B","range":"(0,01 – 20) mg/l"},{"name":"Ba","range":"(0,001 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Mg Mn Mo Na Ni P Pb Si (as SiO2) Sr Ti V Zn PB-42 edycja 7 z dnia 02.03.2026 r.","technique_en":"Inductively coupled plasma optical emission spectrometry (ICP-OES)","test_object_en":"Water","methodology_zh":"元素浓度","parameters_zh":[{"name":"Al","range":"(0,01 – 20) mg/l"},{"name":"As","range":"(0,01 – 20) mg/l"},{"name":"B","range":"(0,01 – 20) mg/l"},{"name":"Ba","range":"(0,001 – 20) mg/l"},{"name":"Ca","range":"(0,1 – 1000) mg/l"},{"name":"Cd","range":"(0,001 – 20) mg/l"},{"name":"Co","range":"(0,002 – 20) mg/l"},{"name":"Cr","range":"(0,003 – 20) mg/l"},{"name":"Cu","range":"(0,002 – 20) mg/l"},{"name":"Fe","range":"(0,01 – 100) mg/l"},{"name":"K","range":"(0,5 – 1000) mg/l"},{"name":"Li","range":"(0,01 – 20) mg/l"},{"name":"Mg","range":"(0,1 – 500) mg/l"},{"name":"Mn","range":"(0,001 – 20) mg/l"},{"name":"Mo","range":"(0,003 – 20) mg/l"},{"name":"Na","range":"(0,5 – 2000) mg/l"},{"name":"Ni","range":"(0,005 – 20) mg/l"},{"name":"P","range":"(0,05 – 100) mg/l"},{"name":"Pb","range":"(0,01 – 20) mg/l"},{"name":"Si (jako SiO2)","range":"(0,1 – 100) mg/l"},{"name":"Sr","range":"(0,002 – 20) mg/l"},{"name":"Ti","range":"(0,002 – 20) mg/l"},{"name":"V","range":"(0,002 – 20) mg/l"},{"name":"Zn","range":"(0,003 – 20) mg/l"}],"search_zh":"水 元素浓度 电感耦合等离子体原子发射光谱法（ICP-OES） Al As B Ba Ca Cd Co Cr Cu Fe K Mg Mn Mo Na Ni P Pb Sr Ti V Zn PB-42 edycja 7 z dnia 02.03.2026 r.","technique_zh":"电感耦合等离子体原子发射光谱法（ICP-OES）","test_object_zh":"水"},{"_id":"6a832cec884ede9a1b2c575d","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Grunty / Soils","methodology":"Określenie rodzaju i stanu gruntu / Identification and description of soil","parameters":[],"technique":"Metoda makroskopowa / Macroscopic method","techniques":["Metoda makroskopowa / Macroscopic method"],"computed":[],"activity":"Określenie rodzaju i stanu gruntu / Identification and description of soil\nMetoda makroskopowa / Macroscopic method","reference":"PN-B-04481:1988 p. 3 | PN-EN ISO 14688-1:2018-05 | PN-EN ISO 14688-2:2018-05","norm_bases":["PN-B-04481:1988 p. 3","PN-EN ISO 14688-1:2018-05","PN-EN ISO 14688-2:2018-05"],"lab_section":"Centrum Badań Gruntów i Skał / Soil and Rock Laboratory Testing Centre","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Grunty / Soils Określenie rodzaju i stanu gruntu / Identification and description of soil\nMetoda makroskopowa / Macroscopic method PN-B-04481:1988 p. 3 | PN-EN ISO 14688-1:2018-05 | PN-EN ISO 14688-2:2018-05 Grunty / Soils Okreslenie rodzaju i stanu gruntu / Identification and description of soil\nMetoda makroskopowa / Macroscopic method PN-B-04481:1988 p. 3 | PN-EN ISO 14688-1:2018-05 | PN-EN ISO 14688-2:2018-05","categories":["environment"],"row_index":38,"parse_version":4,"parse_source":"agent-claude-code"},{"_id":"6a832cec884ede9a1b2c575e","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Grunty / Soils","methodology":"Skład granulometryczny / Particle size distribution","parameters":[],"technique":"Analiza sitowa / Sieving method","techniques":["Analiza sitowa / Sieving method"],"computed":[],"activity":"Skład granulometryczny / Particle size distribution\nAnaliza sitowa / Sieving method","reference":"PN-B-04481:1988 p. 4.1 | PKN-CEN ISO/TS 17892-4:2009 | PN-EN ISO 17892-4:2017-01","norm_bases":["PN-B-04481:1988 p. 4.1","PKN-CEN ISO/TS 17892-4:2009","PN-EN ISO 17892-4:2017-01"],"lab_section":"Centrum Badań Gruntów i Skał / Soil and Rock Laboratory Testing Centre","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Grunty / Soils Skład granulometryczny / Particle size distribution\nAnaliza sitowa / Sieving method PN-B-04481:1988 p. 4.1 | PKN-CEN ISO/TS 17892-4:2009 | PN-EN ISO 17892-4:2017-01 Grunty / Soils Sklad granulometryczny / Particle size distribution\nAnaliza sitowa / Sieving method PN-B-04481:1988 p. 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distribution\nAnaliza areometryczna / Hydrometer method PN-B-04481:1988 p. 4.2 | PN-EN ISO 17892-4:2017-01 Grunty / Soils Sklad granulometryczny / Particle size distribution\nAnaliza areometryczna / Hydrometer method PN-B-04481:1988 p. 4.2 | PN-EN ISO 17892-4:2017-01","categories":["environment"],"row_index":40,"parse_version":4,"parse_source":"agent-claude-code"},{"_id":"6a832cec884ede9a1b2c5760","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Grunty / Soils","methodology":"Gęstość objętościowa gruntu / Bulk density of soil","parameters":[],"technique":"Metoda wagowo-objętościowa / Weight-volume method","techniques":["Metoda wagowo-objętościowa / Weight-volume method"],"computed":[],"activity":"Gęstość objętościowa gruntu / Bulk density of soil\nMetoda wagowo-objętościowa / Weight-volume method","reference":"PN-B-04481:1988 p. 5.2.6 | PKN-CEN ISO/TS 17892-2:2009 | PN-EN ISO 17892-2:2015-02","norm_bases":["PN-B-04481:1988 p. 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mm"}],"search_zh":"范围 / Range PB-101/CBGS edycja 6 z dnia 02.03.2026 r."},{"_id":"6a832cec884ede9a1b2c5765","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Grunty / Soils","methodology":"Współczynnik filtracji / Coefficient of permeability","parameters":[{"name":"Zakres / Range","range":"(1x10-6 – 1x10-11) m/s"}],"technique":"Metoda badania filtracji w permeametrze o elastycznych ściankach ze stałym i zmiennym spadkiem hydraulicznym / Determination of permeability in a permeameter with flexible walls by constant and falling head","techniques":["Metoda badania filtracji w permeametrze o elastycznych ściankach ze stałym i zmiennym spadkiem hydraulicznym / Determination of permeability in a permeameter with flexible walls by constant and falling head"],"computed":[],"activity":"Współczynnik filtracji / Coefficient of permeability\nZakres / Range (1x10-6 – 1x10-11) m/s\nMetoda badania filtracji w permeametrze o elastycznych 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sciankach ze stalym i zmiennym spadkiem hydraulicznym / Determination of permeability in a permeameter with flexible walls by constant and falling head PKN-CEN ISO/TS 17892-11:2009 | PN-EN ISO 17892-11:2019-05","categories":["environment"],"row_index":46,"parse_version":4,"parse_source":"agent-claude-code","parameters_en":[{"name":"Range","range":"(1x10-6 – 1x10-11) m/s"}],"search_en":"Range PKN-CEN ISO/TS 17892-11:2009 | PN-EN ISO 17892-11:2019-05","parameters_zh":[{"name":"范围 / Range","range":"(1x10-6 – 1x10-11) m/s"}],"search_zh":"范围 / Range PKN-CEN ISO/TS 17892-11:2009 | PN-EN ISO 17892-11:2019-05"},{"_id":"6a832cec884ede9a1b2c5766","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Grunty / Soils","methodology":"Strata masy przy prażeniu / Determination of the ignition loss of mass","parameters":[],"technique":"Metoda wagowa / Weight method","techniques":["Metoda wagowa / Weight method"],"computed":[],"activity":"Strata masy 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Organic matters content\nMetoda utleniania / Oxidation method PN-B-04481:1988 p. 4.4.4.1","categories":["environment"],"row_index":48,"parse_version":4,"parse_source":"agent-claude-code"},{"_id":"6a832cec884ede9a1b2c5768","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Grunty / Soils","methodology":"Gęstość właściwa szkieletu gruntowego / Particle density","parameters":[],"technique":"Metoda piknometru gazowego / Gas pycnometer method","techniques":["Metoda piknometru gazowego / Gas pycnometer method"],"computed":[],"activity":"Gęstość właściwa szkieletu gruntowego / Particle density\nMetoda piknometru gazowego / Gas pycnometer method","reference":"PN-EN ISO 17892-3:2016-03","norm_bases":["PN-EN ISO 17892-3:2016-03"],"lab_section":"Centrum Badań Gruntów i Skał / Soil and Rock Laboratory Testing Centre","lab_address":null,"regulatory_area":null,"flexible":false,"search_text":"Grunty / Soils Gęstość właściwa szkieletu gruntowego / Particle density\nMetoda piknometru gazowego / Gas pycnometer method PN-EN ISO 17892-3:2016-03 Grunty / Soils Gestosc wlasciwa szkieletu gruntowego / Particle density\nMetoda piknometru gazowego / Gas pycnometer method PN-EN ISO 17892-3:2016-03","categories":["environment"],"row_index":49,"parse_version":4,"parse_source":"agent-claude-code"},{"_id":"6a832cec884ede9a1b2c5769","lab_id":"69ad52a3de79e566650fb199","country":"PL","accr_number":"AB 283","accr_body":"PCA","test_object":"Grunty / Soils","methodology":"Maksymalna i minimalna gęstość objętościowa gruntów niespoistych / Maximum and minimum dry density non-cohesive soils","parameters":[],"technique":"Metoda wagowo-objętościowa / Weight-volume method","techniques":["Metoda wagowo-objętościowa / Weight-volume method"],"computed":[],"activity":"Maksymalna i minimalna gęstość objętościowa gruntów niespoistych / Maximum and minimum dry density non-cohesive soils\nMetoda wagowo-objętościowa / Weight-volume 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