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>UNE standards>UNE EN ISO 20236:2025 - Water quality - Determination of total organic carbon (TOC), dissolved organic carbon (DOC), total bound nitrogen (TNb) and dissolved bound nitrogen (DNb) after high temperature catalytic oxidative combustion (ISO 20236:2024)
in stockReleased: 2025-05-21
UNE EN ISO 20236:2025 - Water quality - Determination of total organic carbon (TOC), dissolved organic carbon (DOC), total bound nitrogen (TNb) and dissolved bound nitrogen (DNb) after high temperature catalytic oxidative combustion (ISO 20236:2024)

UNE EN ISO 20236:2025

Water quality - Determination of total organic carbon (TOC), dissolved organic carbon (DOC), total bound nitrogen (TNb) and dissolved bound nitrogen (DNb) after high temperature catalytic oxidative combustion (ISO 20236:2024)

Calidad del agua. Determinación del carbono orgánico total (TOC), carbono orgánico disuelto (DOC), nitrógeno enlazado total (TNb) y nitrógeno enlazado disuelto (DNb) tras combustión oxidativa catalítica a alta temperatura. (ISO 20236:2024).

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Standard number:UNE EN ISO 20236:2025
Pages:28
Released:2025-05-21
Status:Standard
Pages (Spanish):31
DESCRIPTION

UNE EN ISO 20236:2025

This document specifies a method for the determination of total organic carbon (TOC), dissolved organic carbon (DOC), total bound nitrogen (TNb) and dissolved bound nitrogen (DNb) in the form of free ammonia, ammonium, nitrite, nitrate and organic compounds capable of conversion to nitrogen oxides under the conditions described. The procedure is carried out by automated analysis. NOTE Generally the method can be applied for the determination of total carbon (TC) and total inorganic carbon (TIC), see Annex A. The method is applicable to water samples (e.g. drinking water, raw water, ground water, surface water, sea water, waste water, leachates). The method allows a determination of TOC and DOC e" 1 mg/l and TNb and DNb e" 1 mg/l. The upper working range is restricted by instrument-dependent conditions (e.g. injection volume). Higher concentrations can be determined after appropriate dilution of the sample. The determination of concentrations <1 mg/l is dependent on instrument conditions applying appropriate calibration. For samples containing volatile organic compounds (e.g. industrial waste water), the application of the difference method could be considered, see Annex A. Cyanide, cyanate and particles of elemental carbon (soot), when present in the sample, can be determined together with the organic carbon. Dissolved nitrogen gas (N2) is not determined.