ISO 25597:2013
Stationary source emissions — Test method for determining PM2,5 and PM10 mass in stack gases using cyclone samplers and sample dilution
Stationary source emissions — Test method for determining PM2,5 and PM10 mass in stack gases using cyclone samplers and sample dilution
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 72
- Дата публикации:
- 19 марта 2013 г.
- Издание:
- ISO IS 25597 edition 1 version 1
- ICS:
- 13.040.40
ISO 25597:2013 specifies procedures for the extraction and measurement of filterable particulate matter from stationary source flue gas samples by: a) the use of cyclone samplers; b) the measurement of condensed particulate matter using dilution sampling technique, which simulates the interaction of stack gas components with the atmosphere as they mix after the stack exit. ISO 25597:2013 provides for the use of two types of sampling train. 1) Basic sampling train, a basic sampling train to measure filterable particles using sampling cyclones that can distinguish between particle sizes in the range of 2,5 μm and 10 μm. This method is especially suitable for measurements of particle mass concentrations above 50 mg/m3 as a half-hourly average at standard conditions (293 K, 1 013 hPa, dry gas) and applies to primary particulate matter (PM) emissions equal to or less than an aerodynamic diameter of nominally 10 μm (PM10) from stacks or ducts. 2) Dilution sampling train, a dilution sampling train that utilizes a dilution chamber that mixes flue gas with conditioned dilution air to simulate the interaction of the stack gas components with ambient air. This simulation process may lead to the condensation of particulate matter that might not otherwise be produced in the basic sampling train. The dilution sampling train uses in-stack sampling cyclones to measure filterable particles in the same manner as the basic sampling train, but in addition, utilizes additional PM2,5 and/or PM10 cyclones in the sampling train to measure particles formed in the dilution chamber. This method is intended for the measurement of mass concentrations of particles smaller than 2,5 μm aerodynamic diameter (PM2,5) using weighing techniques. The method can be used to measure mass concentrations of particles with aerodynamic diameter smaller than 10 μm aerodynamic diameter (PM10) or particles with aerodynamic diameters between 2,5 μm and 10 μm. In this method, the dilution sampling train can be used in combination with the basic sampling train, using PM10 and/or PM2,5 depending upon the test objectives. The dilution sampling system is intended for applications where measurement is required of particles similar in characteristics to materials formed when a flue gas exhaust mixes with ambient air. Particulate matter filter samples collected using dilution sampling can be further analysed to provide chemical composition data that are applicable for developing PM2,5 or PM10 emission inventories, visibility impact assessments, health risk assessments, and source?receptor studies related to PM2,5 and PM10 emissions. This method is not applicable to the determination of ultrafine particles with an aerodynamic diameter of less than 0,1 μm. This method has been applied to emission sources with low moisture and saturated moisture stack gases; however, it is not applicable to effluents where entrained water droplets are present. It is recognized that there are some combustion processes and situations that can limit the applicability of ISO 25597:2013. Where such conditions exist, caution and competent technical judgment are required, especially when dealing with any of the following: i) high-vacuum, high-pressure or high-temperature gas streams above 260 °C; ii) fluctuations in velocity, temperature or concentration due to uncontrollable variation in the process; iii) gas stratification due to the non-mixing of gas streams. There are also limitations specific to each sampling technique. Stacks with entrained moisture droplets can have droplet sizes larger than the cut sizes for the cyclones. These water droplets normally contain particles and dissolved solids that become PM10 and PM2,5 following evaporation of the water. For dilution sampling, a known limitation of this method concerns the presence of particles in the dilution air at very low concentrations, contributing to measurement background. This can be significant for certain very clean sources, e.g. ga
Abstract
Overview
ISO 25597:2013 (identical to ISO 25597:2013) defines a test method for determining PM2.5 and PM10 mass in stack gases from stationary sources. The standard describes procedures for measuring filterable particulate matter using cyclone samplers and a dilution sampling technique that simulates atmospheric mixing and condensation processes that can form additional particulate matter after stack exit.
Key topics and technical requirements
- Two sampling trains:
- Basic sampling train - uses in‑stack cyclones to separate and collect filterable particles at nominal cut sizes of 2.5 μm and 10 μm (PM2.5 / PM10). Designed especially for particle mass concentrations above about 50 mg/m³ (30‑minute average at standard conditions: 293 K, 1013 hPa, dry gas).
- Dilution sampling train - adds a dilution chamber mixing flue gas with conditioned air to simulate ambient dilution and promote condensation of semi‑volatile components. Additional cyclones downstream of the dilution chamber collect particles formed by this process.
- Gravimetric analysis - mass determination by filter weighing (pre‑ and post‑sampling conditioning, equilibration, analytical balances).
- Sampling principles - cyclone theory, isokinetic in‑stack sampling, dilution ratio control and mixing verification.
- QA/QC and calibration - calibration of flow meters, temperature/pressure/humidity sensors, leak checks, blanks, replicate measurements, and dilution system validation.
- Data and reporting - procedures for test reports covering operating conditions, sampling locations, methods, and quality assurance details.
Practical applications and who uses it
- Environmental laboratories and emissions testing contractors performing regulatory or voluntary stack testing for PM2.5 and PM10.
- Industrial facility environmental managers and compliance officers assessing stationary source emissions.
- Air quality researchers and agencies developing emission inventories, source‑receptor studies, visibility impact assessments, and health risk assessments that require composition and mass data for PM2.5/PM10.
- Designers of sampling equipment and QA professionals validating dilution sampling systems and gravimetric procedures.
Limitations and cautions
- Not applicable to ultrafine particles < 0.1 μm or to effluents containing entrained water droplets (droplets can bias results).
- Use caution for high‑temperature (>260 °C), high‑pressure, high‑vacuum streams, or where significant velocity/temperature/concentration fluctuations or gas stratification exist.
- Dilution sampling can be affected by particle background in dilution air, particularly for very clean sources.
Related standards
Refer to other ISO and national standards covering stationary source emissions, particulate sampling, and gravimetric methods for complementary guidance and regulatory alignment.
Keywords: ISO 25597, ISO 25597:2013, PM2.5, PM10, cyclone samplers, dilution sampling, stack gases, stationary source emissions, gravimetric analysis, sampling train, emission inventories.
Технические детали
- Технический комитет
- ISO/TC 146/SC 1 - Stationary source emissions
- SKU
- ISO 25597:2013
Похожие стандарты
Упомянутые в описании и другие стандарты ISO
BS ISO 25597:2013
ДействующийStationary source emissions. Test method for determining PM2,5 and PM10 mass in stack gases using cyclone sam…
ISO 8212:1986
ОтменёнSoaps and detergents — Techniques of sampling during manufacture
Overview Standard Reference: ISO 8212:1986 Title: Soaps and detergents - Techniques of sampling during manufacture ISO 8212:1986 defines standardized techniques for taking representative samples of s…
ISO 20662:2020
ДействующийShips and marine technology — Hopper dredger supervisory and control systems
Overview ISO 20662:2020 - Ships and marine technology: Hopper dredger supervisory and control systems (HD‑SCS) - specifies the components, structure, general requirements, and functional requirements…
ISO 3021:2023
ДействующийAdventure tourism — Hiking and trekking activities — Requirements and recommendations
Overview ISO 3021:2023 - Adventure tourism: Hiking and trekking activities - Requirements and recommendations defines safety-focused requirements and recommendations for hiking and trekking offered a…
ISO 3826-2:2008
ДействующийPlastics collapsible containers for human blood and blood components — Part 2: Graphical symbols for use on l…
Overview ISO 3826-2:2008 - "Plastics collapsible containers for human blood and blood components - Part 2: Graphical symbols for use on labels and instruction leaflets" defines a system of internatio…
ISO/IEC 24730-1:2014
ДействующийInformation technology — Real-time locating systems (RTLS) — Part 1: Application programming interface (API)
Overview ISO/IEC 24730-1:2014 specifies the Application Programming Interface (API) for Real‑Time Locating Systems (RTLS). The standard defines a minimal, interoperable boundary that lets application…
ISO 8668-5:1992
ДействующийAircraft — Terminal junction systems — Part 5: Detail specification for type 3 system
Overview - ISO 8668-5:1992 (Aircraft terminal junction systems, Type 3) ISO 8668-5:1992 defines the detail specification for Type 3 Terminal Junction Systems (TJS) used in aircraft electrical install…
ISO 7574-3:1985
ДействующийAcoustics — Statistical methods for determining and verifying stated noise emission values of machinery and e…
Overview ISO 7574-3:1985 is part of the ISO 7574 series on acoustics and provides a simple (transition) statistical method for determining and verifying stated noise emission values for batches (lots…