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ASTM D 6420 : 2018

Current

Current

The latest, up-to-date edition.

Standard Test Method for Determination of Gaseous Organic Compounds by Direct Interface Gas Chromatography-Mass Spectrometry

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

01-11-2018

This test method employs a direct interface gas chromatograph/mass spectrometer (GCMS) to identify and quantify the 36 volatile organic compounds (or sub-set of these compounds) listed as follows.

1.1This test method employs a direct interface gas chromatograph/mass spectrometer (GCMS) to identify and quantify the 36 volatile organic compounds (or sub-set of these compounds) listed as follows. The individual Chemical Abstract Service (CAS) numbers are listed after each compound.

Benzene-71432

Methylene chloride-75092

Bromodichloromethane-75274

1,1,2,2-Tetrachloroethane-79349

Carbon disulfide-75150

1,1,1-Trichloroethane-71556

Chloroform-67663

1,1,2-Trichloroethane-79005

Methyl iso-Butyl ketone-108101

p-Xylene-106423

Styrene-100425

Bromomethane-74839

Tetrachloroethylene-127184

Carbon tetrachloride-56235

Toluene-108883

Chlorobenzene-108907

Bromoform-75252

c-1,3-Dichloropropene-10061015

Vinyl acetate-108054

1,2-Dichloroethane-156592

Vinyl chloride-75014

1,1-Dichloroethene-75354

Chloromethane-74873

t-1,2-Dichloroethene-156605

cis-1,2-Dichloroethene-156592

Methyl ethyl ketone-78933

Dibromochloromethane-124481

2-Hexanone-591786

1,1-Dichloroethane-107062

t-1,3-Dichloropropene-542756

1,2-Dichloropropane-78875

Trichloroethene-79016

Ethylbenzene-100414

m-Xylene-108383

Ethyl chloride-75003

o-Xylene-95476

1.2The test method incorporates a performance-based approach, which validates each GCMS analysis by placing boundaries on the instrument response to gaseous internal standards and their specific mass spectral relative abundance. Using this approach, the test method may be extended to analyze other compounds.

1.3The test method provides on-site analysis of extracted, unconditioned, and unsaturated (at the instrument) gas samples from stationary sources. Gas streams with high moisture content may require conditioning to prevent moisture condensation within the instrument. For these samples, quality assurance (QA) requirements are provided in the test method to validate the analysis of polar, water-soluble compounds.

1.4The instrument range should be sufficient to measure the listed volatile organic compounds from 150 ppb(v) to 100 ppm(v), using a full scan operation (between 45 and 300 atomic mass units). The range may be extended to higher or lower concentrations using either of the following procedures:

1.4.1The initial three-point calibration concentrations and the continuing calibration checks are adjusted to match the stack concentrations, or

1.4.2The three-point calibration is extended to include additional concentrations to cover the measurement range.

1.5The minimum quantification level is 50 % of the lowest calibration concentration. Responses below this level are considered to be estimated concentrations, unless a calibration standard check is conducted at a lower concentration to demonstrate linearity. The sensitivity of the GCMS measurement system for the individual target analytes depends upon:

1.5.1The specific instrument response for each target analyte and the number of mass spectral quantification ions available.

1.5.2The amount of instrument noise, and

1.5.3The percent moisture content of the sample gas.

1.6The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.7This 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. Additional safety precautions are described in Section 9.

1.8This 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.

Committee
D 22
DocumentType
Test Method
Pages
7
PublisherName
American Society for Testing and Materials
Status
Current
Supersedes

ASTM F 2150 : 2013 Standard Guide for Characterization and Testing of Biomaterial Scaffolds Used in Tissue-Engineered Medical Products
ASTM F 2883 : 2011 Standard Guide for Characterization of Ceramic and Mineral Based Scaffolds used for Tissue-Engineered Medical Products (TEMPs) and as Device for Surgical Implant Applications (Withdrawn 2020)

ASTM D 3195 : 1990 : R2004 Standard Practice for Rotameter Calibration
ASTM D 1356 : 2015 Standard Terminology Relating to Sampling and Analysis of Atmospheres
ASTM D 1356 : 2017 Standard Terminology Relating to Sampling and Analysis of Atmospheres
ASTM D 1356 : 2015 : REV B Standard Terminology Relating to Sampling and Analysis of Atmospheres
ASTM D 1356 : 2014 : REV A Standard Terminology Relating to Sampling and Analysis of Atmospheres
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 D 1356 : 2020 Standard Terminology Relating to Sampling and Analysis of Atmospheres
ASTM D 1356 : 2000 : REV A Standard Terminology Relating to Sampling and Analysis of Atmospheres
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 1356 : 2005 Standard Terminology Relating to Sampling and Analysis of Atmospheres
ASTM D 3195 : 1990 : R1998 : EDT 1 Standard Practice for Rotameter Calibration

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