ISO 29441:2010
Water quality — Determination of total nitrogen after UV digestion — Method using flow analysis (CFA and FIA) and spectrometric detection
Water quality — Determination of total nitrogen after UV digestion — Method using flow analysis (CFA and FIA) and spectrometric detection
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 21
- Дата публикации:
- 23 марта 2010 г.
- Издание:
- ISO IS 29441 edition 1 version 1
- ICS:
- 13.060.50
ISO 29441:2010 specifies a method for the determination of total nitrogen after inline UV digestion, in various types of waters, such as ground, drinking, surface, and waste waters, in mass concentrations ranging from 2 mg/l to 20 mg/l for total nitrogen, all in the undiluted sample. Other mass concentration ranges are possible, provided the upper limit of the concentration range is exactly 10 times the lower limit (e.g. 0,2 mg/l to 2,0 mg/l). The range of application can be changed by varying the operating conditions.
Abstract
Overview
ISO 29441:2010 specifies a standardized laboratory method for the determination of total nitrogen in water after inline UV digestion, using automated flow analysis techniques - both continuous flow analysis (CFA) and flow injection analysis (FIA) - with spectrometric detection. The method applies to a variety of waters (ground, drinking, surface and waste waters) and is optimized for undiluted sample mass concentration ranges such as 2 mg/L to 20 mg/L (other ranges allowed when the upper limit is exactly 10× the lower limit). The procedure supports high-throughput automated analysis (up to ~100 samples per hour).
Key technical topics and requirements
- Principle: Organic and reduced nitrogen species are oxidized by a buffered peroxodisulfate solution combined with thermal UV radiation to form nitrate. Nitrate is reduced to nitrite on a cadmium catalyst, then diazotised and coupled to form a colored azo dye measured spectrometrically.
- Flow systems: Supports both FIA and CFA manifold designs; examples and flow diagrams are provided in annexes for the 2–20 mg/L range.
- Calibration & range: At least five calibration solutions are recommended; concentration ranges can be adjusted by changing operating conditions while respecting the 10× upper/lower rule.
- Reagents & materials: Analytical-grade reagents (peroxodisulfate, imidazole buffers, sulfanilamide, N-(1‑naphthyl)ethylenediamine, cadmium granules, etc.). Regular reagent blank checks and degassing of solutions are required.
- Interferences & limitations:
- Extreme pH or strong buffering may interfere; multiple dilutions or standard additions may be necessary.
- High organic load (TOC > 100 mg/L) can reduce oxidation yield.
- Particulates >50 µm require homogenisation.
- Seawater needs adaptation for salinity and may require carrier/calibration adjustments and attention to Ca/Mg precipitation.
- Quality & safety: Follow ISO sampling/handling references; trained staff required. Waste containing cadmium must be disposed of properly.
Practical applications and users
- Routine monitoring of total nitrogen in environmental and drinking-water laboratories.
- Regulatory compliance testing by water utilities and environmental agencies.
- Process control and effluent monitoring at wastewater treatment plants.
- Research labs performing high-throughput nitrogen speciation and mass-balance studies. Benefits include automation, consistent reproducibility, and the ability to process large sample series efficiently.
Related standards
- ISO 13395 - Determination of nitrite and nitrate by flow analysis and spectrometric detection.
- ISO 3696, ISO 5667-3, ISO 8466-1/2 - supporting guidance on water for analysis, sampling, and calibration/evaluation.
Keywords: ISO 29441:2010, total nitrogen, UV digestion, flow analysis, CFA, FIA, spectrometric detection, water quality, nitrate/nitrite, calibration, cadmium reduction.
Технические детали
- Технический комитет
- ISO/TC 147/SC 2 - Physical, chemical and biochemical methods
- SKU
- ISO 29441:2010
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