SIST ISO 21741:2021 PDF
Stationary source emissions - Sampling and determination of mercury compounds in flue gas using gold amalgamation trap
Stationary source emissions - Sampling and determination of mercury compounds in flue gas using gold amalgamation trap
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 41
- Дата публикации:
- 16 апреля 2021 г.
- ICS:
- 13.040.40
- Технический комитет:
- KAZ - Air quality
This document describes a method for the sampling and measurement of mercury of both vapour and solid phases on stationary source flue gas streams. Mercury generally exists as elemental (Hg0) and oxidized (Hg2+) forms, both in the vapour and solid phases in flue gases. The vapour-phase (gaseous) mercury is captured either isokinetically or non-isokinetically with a gold amalgamation trap after removing solid-phase (particulate) mercury with a filter. Because gold amalgamation trap captures only gaseous elemental mercury, the oxidized mercury (Hg2+) in the vapour phase is converted to elemental mercury (Hg0) prior to the gold amalgamation trap. The concentration of gaseous mercury is determined using atomic absorption spectrometry (AAS) or atomic fluorescence spectrometry (AFS) after releasing mercury by heating the gold amalgamation trap. Separately, particulate mercury is collected isokinetically on a filter and the concentration is determined using cold vapour AAS or cold vapour AFS after dissolving the particulate mercury into solution. The total concentration of mercury in flue gas is expressed as the sum of both gaseous and particulate mercury concentrations. The gold amalgamation method is intended for short-term (periodic) measurements of gaseous mercury ranging from 0,01 μg/m3 to 100 μg/m3 with sampling volumes from 0,005 m3 to 0,1 m3 and sample gas flow rate between 0,2 l/min to 1 l/min. The measurement range of particulate mercury is typically from 0,01 μg/m3 to 100 μg/m3 with sampling volume from 0,05 m3 to 1 m3.
Abstract
Overview
SIST ISO 21741:2021 - "Stationary source emissions - Sampling and determination of mercury compounds in flue gas using gold amalgamation trap" defines a validated, periodic method for measuring mercury in flue gas from stationary sources. The standard covers sampling of both gaseous (vapour) and particulate mercury, conversion of oxidized mercury to elemental mercury, trapping of elemental mercury on a gold amalgamation trap, and subsequent quantification by atomic absorption spectrometry (AAS) or atomic fluorescence spectrometry (AFS). It is intended for short-term monitoring of mercury concentrations in ducts and stacks from sources such as coal-fired power plants, cement kilns, smelters and waste incinerators.
Key topics and technical requirements
- Scope of measurement: Describes sampling and determination of elemental (Hg0) and oxidized (Hg2+) mercury in both vapour and particulate phases in flue gas.
- Sampling approach:
- Particulate mercury is collected isokinetically on a filter; gaseous mercury is captured with a gold amalgamation trap after particulate removal.
- Gaseous oxidized mercury (Hg2+) is chemically converted to elemental mercury before trapping because the gold trap captures elemental mercury only.
- Gaseous sampling can be isokinetic or non‑isokinetic depending on configuration.
- Analytical techniques:
- Release mercury from the gold trap by heating and measure with AAS or AFS.
- Dissolve particulate-laden filters and determine particulate mercury using cold vapour AAS or cold vapour AFS.
- Measurement ranges and sampling parameters:
- Gaseous mercury: typically 0.01 μg/m3 to 100 μg/m3; sampling volumes 0.005–0.1 m3; flow rates 0.2–1 L/min.
- Particulate mercury: typically 0.01 μg/m3 to 100 μg/m3; sampling volumes 0.05–1 m3.
- Quality and reporting:
- Includes procedures for leak checks, blanks, sample recovery, calculation of dry and normalized concentrations, detection limits and evaluation of measurement uncertainty.
- Supporting material:
- Informative annexes on reference gas preparation, uncertainty evaluations and method comparisons (e.g., EN 13211).
Practical applications and users
SIST ISO 21741:2021 is used by:
- Environmental monitoring laboratories performing regulatory or compliance testing.
- Plant operators (power plants, cement kilns, smelters, incinerators) conducting emissions inventories and process controls.
- Regulatory agencies and consultants developing emissions permits, compliance monitoring programs and emissions factor studies.
- Researchers comparing mercury measurement techniques.
Benefits include consistent, comparable mercury emission data, traceable analytical procedures, and guidance for ensuring sample integrity and measurement quality.
Related standards
- EN 13211 (method comparison referenced in Annex D)
- Other ISO and national standards on stationary source emissions and air quality monitoring (see ISO/TC 146 publications for related guidance).
Технические детали
- SKU
- SIST ISO 21741:2021
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