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Xiya Reagent:How the complexity of interfacial chemistry transla

Environmental Science and Technology, a journal of the American Chemical Society, recently published research by University of Kentucky chemistry Assistant Professor Marcelo Guzman, graduate student Elizabeth Pillar and senior Robert Camm.
 
 
The article, "Catechol Oxidation by Ozone and Hydroxyl Radicals at the Air-Water Interface," features the team's findings from work funded by the National Science Foundation (NSF) Division of Chemistry and NASA Kentucky Space Grant Consortium and EPSCoR Programs.
Their research opens new doors to understanding how the complexity of interfacial chemistry translates into reactions that cause significant changes in the atmosphere.
Aerosols particles suspended in the lower atmosphere have a direct effect on climate by absorbing or reflecting sunlight, depending on their chemical composition, and indirectly by seeding clouds. Aerosols are commonly created from the condensation of gaseous pollutants emitted into the atmosphere from human made processes, such as car engines' internal combustion, or naturally occurring phenomena like forest fires.
Scientists have found it difficult to study the fate of these combustion pollutants under humid conditions, as well as identifying reactions that produce molecules capable of generating aerosols in atmospheric waters, according to Guzman.· 以上资料由西亚试剂http://www.xiyashiji.com/ 提供此产品的详细信息如密度,含量,分子式,分子量等均可在西亚官网查询   

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