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异戊二烯气相光氧化过程中意外生成环氧化物。

Unexpected epoxide formation in the gas-phase photooxidation of isoprene.

作者信息

Paulot Fabien, Crounse John D, Kjaergaard Henrik G, Kürten Andreas, St Clair Jason M, Seinfeld John H, Wennberg Paul O

机构信息

Division of Engineering and Applied Science, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Science. 2009 Aug 7;325(5941):730-3. doi: 10.1126/science.1172910.

Abstract

Emissions of nonmethane hydrocarbon compounds to the atmosphere from the biosphere exceed those from anthropogenic activity. Isoprene, a five-carbon diene, contributes more than 40% of these emissions. Once emitted to the atmosphere, isoprene is rapidly oxidized by the hydroxyl radical OH. We report here that under pristine conditions isoprene is oxidized primarily to hydroxyhydroperoxides. Further oxidation of these hydroxyhydroperoxides by OH leads efficiently to the formation of dihydroxyepoxides and OH reformation. Global simulations show an enormous flux--nearly 100 teragrams of carbon per year--of these epoxides to the atmosphere. The discovery of these highly soluble epoxides provides a missing link tying the gas-phase degradation of isoprene to the observed formation of organic aerosols.

摘要

生物圈向大气排放的非甲烷碳氢化合物超过了人为活动排放的量。异戊二烯,一种五碳二烯,占这些排放量的40%以上。一旦排放到大气中,异戊二烯会迅速被羟基自由基OH氧化。我们在此报告,在原始条件下,异戊二烯主要被氧化为羟基氢过氧化物。这些羟基氢过氧化物被OH进一步氧化可有效导致二羟基环氧化物的形成和OH的再生。全球模拟显示,这些环氧化物每年向大气的通量巨大——近100太克碳。这些高溶解性环氧化物的发现提供了一个缺失的环节,将异戊二烯的气相降解与观测到的有机气溶胶形成联系起来。

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