GSTDTAP  > 地球科学
DOI10.5194/acp-2020-492
Secondary Organic Aerosol Yields from the Oxidation of Benzyl Alcohol
Sophia M. Charan, Reina S. Buenconsejo, and John H. Seinfeld
2020-06-16
发表期刊Atmospheric Chemistry and Physics
出版年2020
英文摘要Recent inventory-based analysis suggests that emissions of volatile chemical products in urban areas are now competitive with those from the transportation sector. Understanding the potential for secondary organic aerosol formation from these volatile chemical products is, therefore, critical to predicting levels of aerosol and for formulating policy to reduce aerosol exposure. It is clear that a plethora of oxygenated compounds are either emitted directly into the atmosphere or emitted indoors and later escape into the outdoors. Experimental and computationally simulated environmental chamber data provide an understanding of aerosol yield and chemistry under relevant urban conditions (5–200 ppb NO and 291–312 K) and give insight into the effect of volatile chemical products on the production of secondary organic aerosol. Benzyl alcohol, one of these volatile chemical products, is found to have a large secondary organic aerosol formation potential. At NO concentrations of ~ 80 ppb and 291 K, secondary organic aerosol mass yields for benzyl alcohol can reach 1.

领域地球科学
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/276563
专题地球科学
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Sophia M. Charan, Reina S. Buenconsejo, and John H. Seinfeld. Secondary Organic Aerosol Yields from the Oxidation of Benzyl Alcohol[J]. Atmospheric Chemistry and Physics,2020.
APA Sophia M. Charan, Reina S. Buenconsejo, and John H. Seinfeld.(2020).Secondary Organic Aerosol Yields from the Oxidation of Benzyl Alcohol.Atmospheric Chemistry and Physics.
MLA Sophia M. Charan, Reina S. Buenconsejo, and John H. Seinfeld."Secondary Organic Aerosol Yields from the Oxidation of Benzyl Alcohol".Atmospheric Chemistry and Physics (2020).
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