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首页> 外文期刊>Geophysical Research Letters >4-Chlorocrotonaldehyde as a unique chlorine-containing compound from the reaction of atomic chlorine with 1,3-butadiene in air at room temperature
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4-Chlorocrotonaldehyde as a unique chlorine-containing compound from the reaction of atomic chlorine with 1,3-butadiene in air at room temperature

机译:4-氯巴豆醛是一种独特的含氯化合物,来自于室温下空气中原子氯与1,3-丁二烯的反应

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Chlorine atoms may play an important role in the tropospheric chemistry of coastal areas and the Arctic at polar sunrise. However, the sources of chlorine are not well established and measuring its precursors in a specific manner is difficult. A potential approach to probe Cl production in the troposphere is to identify and measure chlorine-containing products unique to the reactions of Cl with organics in air, e.g. 1,3-butadiene, which is emitted from motor vehicles. We present here product studies of the reaction of Cl with 1,3-butadiene in the presence and absence of NO in 1 atm air at room temperature using FTIR, API-MS and CC-MS. 4-Chlorocrotonaldehyde (CCA) is identified as a unique chlorine-containing product from this reaction, with a yield of (28 +/- 8)% (2 sigma) independent of the presence of NO. CCA may therefore be useful in field studies as a marker for Cl chemistry in urban coastal areas. [References: 30]
机译:氯原子可能在极地日出时在沿海地区和北极的对流层化学中起重要作用。但是,氯的来源尚不完善,以特定方式测量其前体是困难的。探测对流层中Cl生成的一种潜在方法是识别和测量Cl与空气中有机物之间的反应所特有的含氯产物,例如氯。从汽车排放的1,3-丁二烯。我们在这里使用FTIR,API-MS和CC-MS在室温下的1 atm空气中,在有无NO的条件下,研究Cl与1,3-丁二烯的反应。 4-氯巴豆醛(CCA)被确定为该反应中独特的含氯产物,其产率与(NO)无关地为(28 +/- 8)%(2 sigma)。因此,CCA在田间研究中可用作城市沿海地区Cl化学标记物。 [参考:30]

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