ISO 16000-23:2009
Withdrawn
A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.
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Indoor air Part 23: Performance test for evaluating the reduction of formaldehyde concentrations by sorptive building materials
Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users
25-03-2019
English, French
03-12-2009
ISO 16000-23:2009 specifies a general laboratory test method for evaluating the reduction of formaldehyde concentrations by sorptive building materials. This method applies to boards, wallpapers, carpets, paint products, and other building materials. The sorption of formaldehyde can be brought about by adsorption, absorption and chemisorption. The performance of the material with respect to its ability to reduce the concentration of formaldehyde in indoor air is evaluated by measuring sorption flux and saturation mass per area. The former directly indicates material performance with respect to formaldehyde concentration reduction at a point in time; the latter relates to the ability of a product to maintain that performance.
The method specified in ISO 16000-23:2009 employs formaldehyde-spiked supply air to determine the performance of building materials in reducing formaldehyde concentrations. The characteristics of formaldehyde sorption depend greatly on humidity. Formaldehyde is less stable in air than other volatile organic compounds, so it has to be tested on its own.
ISO 16000-23:2009 is based on the test chamber method specified in ISO 16000-9. Sampling, transport and storage of materials to be tested, and preparation of test specimens are specified in ISO 16000-11. Air sampling and analytical methods for the determination of formaldehyde are specified in ISO 16000-3, which is part of the complete procedure.
DevelopmentNote |
DRAFT ISO/DIS 16000-23 is also available for this standard. (09/2017)
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DocumentType |
Standard
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Pages |
28
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PublisherName |
International Organization for Standardization
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Status |
Withdrawn
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SupersededBy |
Standards | Relationship |
GOST R ISO 16000-23 : 2012 | Identical |
NEN ISO 16000-23 : 2009 | Identical |
BS ISO 16000-23:2009 | Identical |
NF ISO 16000-23 : 2010 | Identical |
17/30343039 DC : 0 | BS ISO 16000-24 - INDOOR AIR - PART 24: PERFORMANCE TEST FOR EVALUATING THE REDUCTION OF VOLATILE ORGANIC COMPOUND CONCENTRATIONS BY SORPTIVE BUILDING MATERIALS |
ISO 18560-1:2014 | Fine ceramics (advanced ceramics, advanced technical ceramics) Test method for air-purification performance of semiconducting photocatalytic materials by test chamber method under indoor lighting environment Part 1: Removal of formaldehyde |
BS ISO 18560-1:2014 | Fine ceramics (advanced ceramics, advanced technical ceramics). Test method for air-purification performance of semiconducting photocatalytic materials by test chamber method under indoor lighting environment Removal of formaldehyde |
ASHRAE HDBK FUNDAMENTALS : 2013 | ASHRAE HANDBOOK - FUNDAMENTALS |
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 6353-3:1987 | Reagents for chemical analysis — Part 3: Specifications — Second series |
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 |
ISO 554:1976 | Standard atmospheres for conditioning and/or testing — Specifications |
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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