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BS ISO 12219-2:2012

Current

Current

The latest, up-to-date edition.

Interior air of road vehicles Screening method for the determination of the emissions of volatile organic compounds from vehicle interior parts and materials. Bag method

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

30-06-2012

Foreword
Introduction
1 Scope
2 Normative references
3 Terms and definitions
4 Principle
5 Apparatus and materials
6 Test conditions
7 Verification of test conditions
8 Test method
9 Analytical procedures
10 Calculation of sampling bag values
11 Test report
12 Quality assurance/quality control
Annex A (informative) - General procedures for preparation
        and storage of test specimens
Annex B (informative) - Additional information on test report
        and recovery rate
Bibliography

Describes the sampling bag test method for measuring volatile organic compounds (VOCs), formaldehyde and other carbonyl compounds which may diffuse from vehicle interior parts into the air inside road vehicles.

This part of ISO12219 specifies the sampling bag test method for measuring volatile organic compounds (VOCs), formaldehyde and other carbonyl compounds which may diffuse from vehicle interior parts into the air inside road vehicles. This method is intended for evaluating and screening new vehicle interior parts and materials such as seats, the instrument panel, ceiling materials and so on. The test method specified in this part of ISO12219 specifies a procedure for screening of VOCs, formaldehyde and other carbonyl compounds using sampling bags. This part of ISO12219 provides third party test laboratories and manufacturing industry with a cost-effective approach for: evaluating and screening prototype, “low-diffusion?? materials or products during development; comparing diffusions from products within a range (e.g. different colours or patterns). This part of ISO12219 specifies the design, construction, performance, evaluation, and use of sampling bags for testing vapour-phase organic emissions diffused from vehicle interior parts.

Committee
EH/2/3
DevelopmentNote
Supersedes 11/30231405 DC. (06/2012)
DocumentType
Standard
Pages
26
PublisherName
British Standards Institution
Status
Current
Supersedes

Standards Relationship
ISO 12219-2:2012 Identical

ISO 16000-25:2011 Indoor air Part 25: Determination of the emission of semi-volatile organic compounds by building products Micro-chamber method
ISO 16000-5:2007 Indoor air Part 5: Sampling strategy for volatile organic compounds (VOCs)
ISO 16017-1:2000 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 16000-24:2009 Indoor air Part 24: Performance test for evaluating the reduction of volatile organic compound (except formaldehyde) concentrations by sorptive building materials
ISO 16017-2:2003 Indoor, ambient and workplace air — Sampling and analysis of volatile organic compounds by sorbent tube/thermal desorption/capillary gas chromatography — Part 2: Diffusive sampling
ISO 16000-9:2006 Indoor air — Part 9: Determination of the emission of volatile organic compounds from building products and furnishing — Emission test chamber method
ISO 16000-3:2011 Indoor air — Part 3: Determination of formaldehyde and other carbonyl compounds in indoor air and test chamber air — Active sampling method
JASO M 902 : 2011 MATERIAL AND SURFACE TREATMENT - ROAD VEHICLES - INTERIOR PARTS AND MATERIALS - MEASUREMENT METHODS OF DIFFUSED VOLATILE ORGANIC COMPOUNDS (VOC)
ISO 16000-10:2006 Indoor air Part 10: Determination of the emission of volatile organic compounds from building products and furnishing Emission test cell method
ISO 16000-11:2006 Indoor air — Part 11: Determination of the emission of volatile organic compounds from building products and furnishing — Sampling, storage of samples and preparation of test specimens
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

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