ASTM-D1607 › Historical Revision Information
Standard Test Method for Nitrogen Dioxide Content of the Atmosphere (Griess-Saltzman Reaction)
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Scope
1.1 This test method covers the manual determination of nitrogen dioxide (NO2) in the atmosphere in the range from 4 to 10 000 μg/m3 (0.002 to 5 ppm(v)) when sampling is conducted in fritted-tip bubblers.
1.2 For concentrations of NO2 in excess of 10 mg/m3 (5 ppm(v)), as occur in industrial atmospheres, gas burner stacks, or automotive exhaust, or for samples relatively high in sulfur dioxide content, other methods should be applied. See for example Test Method D1608.
1.3 The maximum sampling period is 60 min at a flow rate of 0.4 L/min.
1.4 The values stated in SI units are to be regarded as standard. The values given in parentheses are for information only.
1.5 This 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 and health practices and determine the applicability of regulatory limitations prior to use. See also 7.2.2 for other precautions.
Significance and Use
Nitrogen dioxide plays an important role in photochemical smog-forming reactions and, in sufficient concentrations, is deleterious to health, agriculture, materials, and visibility.
In combustion processes, significant amounts of nitric oxide (NO) may be produced by combination of atmospheric nitrogen and oxygen; at ambient temperatures NO can be converted to NO2 by oxygen and other atmospheric oxidants. Nitrogen dioxide may also be generated from processes involving nitric acid, nitrates, the use of explosives, and welding.
Keywords
ambient atmospheres; analysis; colorimetric analysis; Griess-Saltzman Reaction; nitrogen dioxide; sampling: Air monitoring; Atmospheric analysis; Griess-Saltzman reaction; Nitrogen dioxide (NO
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13.040.20 (Ambient atmospheres Including indoor air)
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Document Number
ASTM-D1607-91(2011)
Revision Level
1991 R11 EDITION
Status
Superseded
Modification Type
Reapproval
Publication Date
Oct. 31, 2011
Document Type
Test Method
Page Count
5 pages
Committee Number
D22.03