🔬 Total iron in water

Physicochemistry PN-ISO 6332

Spectrophotometric determination of total iron in water using 1,10-phenanthroline method. Measurement of orange-red Fe²⁺ complex absorbance at 510 nm.

Overview

Iron is one of the most frequently determined water quality parameters. In natural waters, it occurs mainly in the form of Fe²⁺ (ferrous iron, dissolved) and Fe³⁺ (ferric iron, forming precipitates). Elevated iron concentration (>0.2 mg/L) causes rusty discoloration of water, metallic taste, deposits in installations, and promotes growth of iron bacteria.

The PN-EN ISO 6332 standard describes a spectrometric method for determining iron using 1,10-phenanthroline. The method enables determination of total iron (after reduction of Fe³⁺ to Fe²⁺), total dissolved iron, and dissolved ferrous iron. Application range: 0.01–5 mg/L Fe.

The permissible iron concentration in drinking water in Poland is 0.200 mg/L (Ministry of Health Regulation). Determination required in routine monitoring of drinking water, groundwater, surface water, and wastewater.

Method principle

Fe³⁺ present in the sample is reduced to Fe²⁺ using hydroxylamine hydrochloride (NH₂OH·HCl). The reduced Fe²⁺ ions react with 1,10-phenanthroline, forming a stable orange-red tris(1,10-phenanthroline)iron(II) complex [Fe(phen)₃]²⁺. The complex absorbance is measured spectrophotometrically at 510 nm. Color intensity is proportional to iron concentration (Beer-Lambert law). The reaction proceeds optimally at pH 2.9–3.5 in the presence of excess phenanthroline.

Applications

Key parameters

ParameterValue
Measurement range0.01–5.0 mg/L Fe
Wavelength510 nm
Detection limit0.01 mg/L
Accuracy±5% in 0.1–5.0 mg/L range
Reaction pH2.9–3.5
Color development time15 minutes

Standard

Standard number
PN-ISO 6332:2001
Title (PL)
Jakość wody — Oznaczanie żelaza — Metoda spektrometryczna z 1,10-fenantroliną
Title (EN)
Water quality — Determination of iron — Spectrometric method using 1,10-phenanthroline

Step-by-step procedure

1. Sample preparation

Acidify sample with HCl to pH < 2 immediately after collection (stabilization). Filter through 0.45 µm if determining dissolved Fe (do not filter for total Fe).

⏱ Time: 5 min

2. Sample measurement

Transfer appropriate volume of sample (e.g., 50 mL) with pipette to 100 mL volumetric flask. For high concentration samples—dilute.

⏱ Time: 2 min

3. Reduction of Fe³⁺ to Fe²⁺

Add 2 mL of 10% hydroxylamine hydrochloride solution. Mix. Wait 5 min for complete reduction.

⏱ Time: 5 min

4. Buffer addition

Add 5 mL of 10% sodium citrate solution (or sodium acetate) to maintain pH 2.9–3.5. Mix.

⏱ Time: 1 min

5. Phenanthroline addition

Add 5 mL of 0.25% 1,10-phenanthroline solution. Fill to mark with deionized water. Mix and set aside.

⏱ Time: 1 min

6. Color development

Wait minimum 15 minutes for full development of orange-red complex color.

⏱ Time: 15 min • 🌡 Temperature: 20–25°C

7. Absorbance measurement

Measure absorbance at 510 nm in 10 mm cuvette against blank (deionized water + reagents). Read concentration from calibration curve.

⏱ Time: 2 min

8. Calibration

Prepare calibration curve with min. 5 standards (0–5 mg/L Fe) prepared analogously to samples. Correlation coefficient r² > 0.999.

9. Quality control

Every 10 samples measure control sample (CRM). Perform blank and duplicates. Deviation max ±10%.

Required equipment and apparatus

EquipmentExampleIndicative price
UV-VIS spectrophotometerHach DR6000, Shimadzu UV-1900i, Agilent Cary 6015,000–60,000 PLN
Glass cuvettes 10 mmHellma 100-QS, borosilicate optical cuvettes50–300 PLN/piece
Automatic pipettes (1–10 mL)Eppendorf Research Plus, HTL Discovery Comfort800–2,500 PLN
Volumetric flasks (25, 50, 100 mL)Class A, DURAN / Brand borosilicate30–80 PLN/piece
Water bath or heating plateMemmert WNE 10, IKA C-MAG HP 43,000–8,000 PLN
Analytical balance (0.1 mg)Mettler Toledo ME204, Radwag AS 220.R25,000–15,000 PLN

Reagents, media and consumables

ReagentCASDetails
1,10-phenanthroline (hydrochloride monohydrate)5144-89-80.25% solution: dissolve 0.5 g in 200 mL water with a few drops of HCl. Store in dark bottle.
Hydroxylamine hydrochloride (NH₂OH·HCl)5470-11-110% solution: 10 g NH₂OH·HCl in 100 mL water. Reducing agent—converts Fe³⁺ to Fe²⁺. Prepare fresh weekly.
Sodium acetate or sodium citrate6132-04-310% buffer solution: for pH adjustment in 2.9–3.5 range.
Concentrated hydrochloric acid (HCl)7647-01-0For acidifying samples and dissolving phenanthroline. p.a. purity.
Iron standard solution 1000 mg/L Fe7782-63-0Certified CRM (e.g., Merck Certipur). For calibration curve: 0.05; 0.1; 0.5; 1.0; 2.0; 5.0 mg/L.
Deionized waterFree from iron, conductivity <0.1 mS/m.

Health and safety (OHS)

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