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EN ISO 16017-1:2000

Current

Current

The latest, up-to-date edition.

Indoor, ambient and workplace air - Sampling and analysis of volatile organic compounds by sorbent tube/thermal desorption/capillary gas chromatography - Part 1: Pumped sampling (ISO 16017-1:2000)

Published date

15-11-2000

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Foreword
1 Scope
2 Normative references
3 Terms and definitions
4 Principle
5 Reagents and materials
6 Apparatus
7 Sample tube conditioning
8 Calibration of pump
9 Sampling
10 Procedure
      10.1 Safety precautions
      10.2 Desorption and analysis
      10.3 Calibration
      10.4 Determination of sample concentration
      10.5 Determination of desorption efficiency
11 Calculations
      11.1 Mass concentration of analyte
      11.2 Volume concentration of analyte
12 Interferences
13 Performance characteristics
14 Test report
15 Quality control
Annex A (normative) Determination of breakthrough
                      volumes for gas standards
Annex B (normative) Determination of breakthrough
                      volume from the extrapolated
                      retention volume
Annex C (informative) Description of sorbent types
Annex D (informative) Guidance on sorbent selection
Annex E (informative) Guidance on sorbent use
Annex F (informative) Summary of data on overall
                      uncertainty, precision, bias
                      and storage
Bibliography

This part of ISO 16017 gives general guidance for the sampling and analysis of volatile organic compounds (VOCs)in air. It is applicable to ambient, indoor and workplace atmospheres and the assessment of emissions frommaterials in small- or full-scale test chambers.This part of ISO 16017 is appropriate for a wide range of VOCs, including hydrocarbons, halogenated hydrocarbons,esters, glycol ethers, ketones and alcohols. A number of sorbents 1) are recommended for the sampling ofthese VOCs, each sorbent having a different range of applicability. Very polar compounds will generally requirederivatization, very low boiling compounds will only be partially retained by the sorbents, depending on ambienttemperature, and can only be estimated qualitatively. Semi-volatile compounds will be fully retained by thesorbents, but may only be partially recovered. Compounds for which this part of ISO 16017 has been tested aregiven in tables. This part of ISO 16017 may be applicable to compounds not listed, but in these cases it isadvisable to use a back-up tube containing the same or a stronger sorbent.This part of ISO 16017 is applicable to the measurement of airborne vapours of VOCs in a concentration range ofapproximately 0,5 _g/ m3 to 100 mg/m3 individual compound.The upper limit of the useful range is set by the sorptive capacity of the sorbent used and by the linear dynamicrange of the gas chromatograph column and detector or by the sample-splitting capability of the analyticalinstrumentation used. The sorptive capacity is measured as a breakthrough volume of air, which determines themaximum air volume that shall not be exceeded when sampling.The lower limit of the useful range depends on the noise level of the detector and on blank levels of analyte and/orinterfering artefacts on the sorbent tubes. Artefacts are typically sub-nanogram for well-conditioned Tenax GR andcarbonaceous sorbents such as Carbopack/Carbotrap type materials, carbonized molecular sieves and molecularsieves such as Spherocarb, or pure charcoal; at low nanogram levels for Tenax TA and at 5 ng to 50 ng levels forother porous polymers such as Chromosorbs and Porapaks. Sensitivity is typically limited to 0,5 _g/m_ for 10-litreair samples with this latter group of sorbents because of their inherent high background.The procedure specified in this part of ISO 16017 is applicable to low flowrate personal sampling pumps and givesa time-weighted average result. It is not applicable to the measurement of instantaneous or short-term fluctuationsin concentration.1) The sorbents listed in annex C and elsewhere in this International Standard are those known to perform as specified underthis part of ISO 16017. Each sorbent or product that is identified by a trademarked name is unique and has a sole manufacturer;however, they are widely available from many different suppliers. This information is given for the convenience of users of thispart of ISO 16017 and does not constitute an endorsement by ISO of the product named. Equivalent products may be used ifthey can be shown to lead to the same results.

Committee
CEN/TC 264
DocumentType
Standard
PublisherName
Comite Europeen de Normalisation
Status
Current

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CEN/TS 16516:2013 Construction products - Assessment of release of dangerous substances - Determination of emissions into indoor air
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ONORM EN 14662-1 : 2005 AMBIENT AIR QUALITY - STANDARD METHOD FOR MEASUREMENT OF BENZENE CONCENTRATIONS - PART 1: PUMPED SAMPLING FOLLOWED BY THERMAL DESORPTION AND GAS CHROMATOGRAPHY
I.S. EN 14662-1:2005 AMBIENT AIR QUALITY - STANDARD METHOD FOR MEASUREMENT OF BENZENE CONCENTRATIONS - PART 1: PUMPED SAMPLING FOLLOWED BY THERMAL DESORPTION AND GAS CHROMATOGRAPHY

ISO 5725-1:1994 Accuracy (trueness and precision) of measurement methods and results — Part 1: General principles and definitions
EN 1076:2009 Workplace exposure - Procedures for measuring gases and vapours using pumped samplers - Requirements and test methods
ISO 6349:1979 Gas analysis Preparation of calibration gas mixtures Permeation method
ISO 5725-2:1994 Accuracy (trueness and precision) of measurement methods and results Part 2: Basic method for the determination of repeatability and reproducibility of a standard measurement method
ISO 6145-5:2009 Gas analysis — Preparation of calibration gas mixtures using dynamic volumetric methods — Part 5: Capillary calibration devices
ISO 6145-4:2004 Gas analysis Preparation of calibration gas mixtures using dynamic volumetric methods Part 4: Continuous syringe injection method
ISO 6145-3:1986 Gas analysis Preparation of calibration gas mixtures Dynamic volumetric methods Part 3: Periodic injections into a flowing gas stream
ISO 6145-1:2003 Gas analysis Preparation of calibration gas mixtures using dynamic volumetric methods Part 1: Methods of calibration
ISO 6141:2015 Gas analysis Contents of certificates for calibration gas mixtures
ISO 6145-6:2017 Gas analysis — Preparation of calibration gas mixtures using dynamic methods — Part 6: Critical flow orifices

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