ASTM D 8141 : 2017
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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Standard Guide for Selecting Volatile Organic Compounds (VOCs) and Semi-Volatile Organic Compounds (SVOCs) Emission Testing Methods to Determine Emission Parameters for Modeling of Indoor Environments
Hardcopy , PDF
12-30-2022
English
10-12-2017
CONTAINED IN VOL. 11.07, 2017 Pertains to serve as a foundation for understanding when to use emission testing methods designed for volatile organic compounds (VOCs) to determine area-specific emission rates that are typically used in modeling indoor VOC concentrations and when to use emission testing methods designed for semi-volatile organic compounds (SVOCs) to determine mass transfer emission parameters that are typically used to model indoor SVOC concentrations.
Committee |
D 22
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DocumentType |
Guide
|
Pages |
9
|
PublisherName |
American Society for Testing and Materials
|
Status |
Superseded
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SupersededBy |
1.1This guide is intended to serve as a foundation for understanding when to use emission testing methods designed for volatile organic compounds (VOCs) to determine area-specific emission rates that are typically used in modeling indoor VOC concentrations and when to use emission testing methods designed for semi-volatile organic compounds (SVOCs) to determine mass transfer emission parameters that are typically used to model indoor SVOC concentrations.
1.2This guide discusses how organic chemicals are conventionally categorized with respect to volatility.
1.3This guide presents a simplified mass transfer model describing organic chemical emissions from a material to bulk air. The values of the model parameters are shown to be specific to material/chemical/chamber combinations.
1.4This guide shows how to use a mass transfer model to estimate whether diffusion of the chemical within the material or convective mass transfer of the chemical from the surface of the material to the overlying air limits chemical emissions from the material surface.
1.5This guide describes the range of different chambers that are available for emission testing. The chambers are classified as either dynamic or static and either conventional or sandwich. The chambers are categorized as being optimal to determine either the area-specific emission rate or mass transfer emission parameters.
1.6This guide discusses the roles sorption and convective mass transfer coefficients play in selecting the proper emission chamber and analysis method to accurately and efficiently characterize emissions from indoor materials for use in modeling indoor chemical concentrations.
1.7This guide gives recommendations on when to choose an emission test method that is optimized to determine either the area-specific emission rate or mass transfer emission parameters. For chemicals where the controlling mass transfer process is unknown, the guide outlines a procedure to determine if the chemical emission is controlled by convective mass transfer of the chemical from the material.
1.8This guide does not provide specific guidance for measuring emission parameters.
1.9Mechanisms controlling emissions from wet and dry materials and products are different. This guide considers the emission of chemicals from dry materials and products. Examples of SVOCs that this guide applies to include flame retardants, plasticizers, antioxidants, preservatives, and coalescing agents (1).2 Emission estimations for other SVOC classes including those generated by incomplete combustion, sprayed, or applied as a powder (pesticides, termiticides, herbicides, stain repellents, sealants, water repellants) (1) may require different approaches than outlined in this guide.
1.10The effects of the emissions (for example, exposure, and health effects on occupants) are not addressed and are beyond the scope of this guide.
1.11The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.
1.12This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use.
1.13This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
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ASTM D 6177 : 1997 : R2003 | Standard Practice for Determining Emission Profiles of Volatile Organic Chemicals Emitted from Bedding Sets |
ASTM D 6330 : 1998 : R2014 | Standard Practice for Determination of Volatile Organic Compounds (Excluding Formaldehyde) Emissions from Wood-Based Panels Using Small Environmental Chambers Under Defined Test Conditions |
ASTM D 1356 : 2017 | Standard Terminology Relating to Sampling and Analysis of Atmospheres |
ASTM D 6007 : 2014 | Standard Test Method for Determining Formaldehyde Concentrations in Air from Wood Products Using a Small-Scale Chamber |
ASTM E 1333 : 2022 | Standard Test Method for Determining Formaldehyde Concentrations in Air and Emission Rates from Wood Products Using a Large Chamber |
ASTM D 6177 : 2014 : REDLINE | Standard Practice for Determining Emission Profiles of Volatile Organic Chemicals Emitted from Bedding Sets |
ASTM D 6177 : 1997 : R2008 : EDT 1 | Standard Practice for Determining Emission Profiles of Volatile Organic Chemicals Emitted from Bedding Sets |
ASTM D 1356 : 2015 : REV B | Standard Terminology Relating to Sampling and Analysis of Atmospheres |
ASTM D 5116 : 2010 | Standard Guide for Small-Scale Environmental Chamber Determinations of Organic Emissions From Indoor Materials/Products |
ASTM E 1333 : 1996 | Standard Test Method for Determining Formaldehyde Concentrations in Air and Emission Rates from Wood Products Using a Large Chamber |
ASTM D 6670 : 2013 | Standard Practice for Full-Scale Chamber Determination of Volatile Organic Emissions from Indoor Materials/Products |
ASTM D 6345 : 1998 : R2003 | Standard Guide for Selection of Methods for Active, Integrative Sampling of Volatile Organic Compounds in Air |
ASTM D 1356 : 2014 : REV A | Standard Terminology Relating to Sampling and Analysis of Atmospheres |
ASTM D 6345 : 1998 | Standard Guide for Selection of Methods for Active, Integrative Sampling of Volatile Organic Compounds in Air |
ASTM D 5116 : 2017 | Standard Guide for Small-Scale Environmental Chamber Determinations of Organic Emissions from Indoor Materials/Products |
ASTM D 6177 : 2019 | Standard Practice for Determining Emission Profiles of Volatile Organic Chemicals Emitted from Bedding Sets |
ASTM D 6007 : 2022 | Standard Test Method for Determining Formaldehyde Concentrations in Air from Wood Products Using a Small-Scale Chamber |
ASTM D 6330 : 1998 : R2008 | Standard Practice for Determination of Volatile Organic Compounds (Excluding Formaldehyde) Emissions from Wood-Based Panels Using Small Environmental Chambers Under Defined Test Conditions |
ASTM D 6177 : 2014 | Standard Practice for Determining Emission Profiles of Volatile Organic Chemicals Emitted from Bedding Sets |
ASTM D 1356 : 2015 : REV A | Standard Terminology Relating to Sampling and Analysis of Atmospheres |
ASTM D 1356 : 2005 : R2010 | Standard Terminology Relating to Sampling and Analysis of Atmospheres |
ASTM E 1333 : 2014 : REDLINE | Standard Test Method for Determining Formaldehyde Concentrations in Air and Emission Rates from Wood Products Using a Large Chamber |
ASTM D 6007 : 2002 : R2008 | Standard Test Method for Determining Formaldehyde Concentration in Air from Wood Products Using a Small Scale Chamber |
ASTM D 7706 : 2017 | Standard Practice for Rapid Screening of VOC Emissions from Products Using Micro-Scale Chambers |
ASTM D 6670 : 2001 | Standard Practice for Full-Scale Chamber Determination of Volatile Organic Emissions from Indoor Materials/Products |
ASTM D 6670 : 2001 : R2007 | Standard Practice for Full-Scale Chamber Determination of Volatile Organic Emissions from Indoor Materials/Products |
ASTM D 1356 : 2020 | Standard Terminology Relating to Sampling and Analysis of Atmospheres |
ISO 12219-1:2012 | Interior air of road vehicles Part 1: Whole vehicle test chamber Specification and method for the determination of volatile organic compounds in cabin interiors |
ASTM D 6007 : 2002 | Standard Test Method for Determining Formaldehyde Concentration in Air from Wood Products Using a Small Scale Chamber |
ASTM D 1356 : 2000 : REV A | Standard Terminology Relating to Sampling and Analysis of Atmospheres |
ASTM D 5116 : 1997 | Standard Guide for Small-Scale Environmental Chamber Determinations of Organic Emissions from Indoor Materials/Products (Withdrawn 2006) |
ASTM D 1356 : 2014 : REV B | Standard Terminology Relating to Sampling and Analysis of Atmospheres |
ASTM D 1356 : 2014 | Standard Terminology Relating to Sampling and Analysis of Atmospheres |
ASTM D 6670 : 2018 | Standard Practice for Full-Scale Chamber Determination of Volatile Organic Emissions from Indoor Materials/Products |
ASTM D 6330 : 1998 : R2003 | Standard Practice for Determination of Volatile Organic Compounds (Excluding Formaldehyde) Emissions from Wood-Based Panels Using Small Environmental Chambers Under Defined Test Conditions |
ASTM D 6007 : 2014 : REDLINE | Standard Test Method for Determining Formaldehyde Concentrations in Air from Wood Products Using a Small-Scale Chamber |
ASTM D 1356 : 2005 | Standard Terminology Relating to Sampling and Analysis of Atmospheres |
ASTM D 6007 : 1996 | Standard Test Method for Determining Formaldehyde Concentration in Air from Wood Products Using a Small Scale Chamber |
ISO 16000-6:2011 | Indoor air Part 6: Determination of volatile organic compounds in indoor and test chamber air by active sampling on Tenax TA sorbent, thermal desorption and gas chromatography using MS or MS-FID |
ASTM D 7706 : 2011 | Standard Practice for Rapid Screening of VOC Emissions from Products Using Micro-Scale Chambers |
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