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Merck

Photochemical renoxification of nitric acid on real urban grime.

Environmental science & technology (2012-12-15)
Alyson M Baergen, D J Donaldson
要旨

The fate of NO(x) (=NO + NO(2)) is important to understand because NO(x) is a significant player in air quality determination through its role in O(3) formation. Here we show that renoxification of the urban atmosphere may occur through the photolysis of HNO(3) deposited onto urban grime. The photolysis occurs 4 orders of magnitude faster than in water with J values at noon on July 1 in Toronto of 1.2 × 10(-3) s(-1) for nitrate on urban grime and 1.0 × 10(-7) s(-1) for aqueous nitrate. Photolysis of nitrate present on urban grime probably follows the same mechanism as aqueous nitrate photolysis, involving the formation of NO(2), OH, and possibly HONO. Thus NO(x) may be rapidly returned to the atmosphere rather than being ultimately removed from the atmosphere through film wash off.

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製品内容

Sigma-Aldrich
硝酸, ACS reagent, 70%
Sigma-Aldrich
硝酸, 70%, purified by redistillation, ≥99.999% trace metals basis
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硝酸, puriss. p.a., reag. ISO, reag. Ph. Eur., for determinations with dithizone, ≥65%
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硝酸, puriss. p.a., 65.0-67.0%
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硝酸, puriss. p.a., ≥65% (T)
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硝酸, JIS special grade, 60.0-61.0%, density: 1.38
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硝酸, ACS reagent, ≥90.0%
Supelco
濃硝酸, 0.1 M HNO3 in water (0.1N), eluent concentrate for IC
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硝酸, 60.0-62.0%, suitable for determination of toxic metals, density: 1.38
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硝酸, SAJ first grade, 60.0-62.0%, density: 1.38
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硝酸, 1 M
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硝酸, SAJ first grade, 69-70%, density: 1.42
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硝酸, JIS special grade, 69.0-70.0%, density: 1.42
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硝酸, 0.1 M
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硝酸, JIS special grade, ≥97.0%, fuming, density: 1.52
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硝酸, 60.0-62.0%, SAJ super special grade, density: 1.38
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硝酸, SAJ first grade, 65.0-66.0%, density: 1.40
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硝酸, JIS special grade, 65.0-66.0%, density: 1.40
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硝酸, SAJ first grade, ≥97.0%, fuming, density: 1.52
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硝酸, JIS special grade, 90.0-94.0%, fuming, density: 1.50
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硝酸, SAJ first grade, 90.0-94.0%, fuming, density: 1.50