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Exploring matrix effects on photochemistry of organic aerosols

机译:探索基质对有机气溶胶光化学的影响

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摘要

This work explores the effect of the environment on the rate of photolysis of 2,4-dinitrophenol (24-DNP), an important environmental toxin. In stark contrast to the slow photolysis of 24-DNP in an aqueous solution, the photolysis rate is increased by more than an order of magnitude for 24-DNP dissolved in 1-octanol or embedded in secondary organic material (SOM) produced by ozonolysis of α-pinene. Lowering the temperature decreased the photolysis rate of 24-DNP in SOM much more significantly than that of 24-DNP in octanol, with effective activation energies of 53 kJ/mol and 12 kJ/mol, respectively. We discuss the possibility that the increasing viscosity of the SOM matrix constrains the molecular motion, thereby suppressing the hydrogen atom transfer reaction to the photo-excited 24-DNP. This is, to our knowledge, the first report of a significant effect of the matrix, and possibly viscosity, on the rate of an atmospheric photochemical reaction within SOM. It suggests that rates of photochemical processes in organic aerosols will depend on both relative humidity and temperature and thus altitude. The results further suggest that photochemistry in SOM may play a key role in transformations of atmospheric organics. For example, 24-DNP and other nitro-aromatic compounds should readily photodegrade in organic particulate matter, which has important consequences for predicting their environmental fates and impacts.
机译:这项工作探讨了环境对重要的环境毒素2,4-二硝基苯酚(24-DNP)的光解速率的影响。与水溶液中24-DNP的缓慢光解形成鲜明对比的是,溶解在1-辛醇中或嵌入通过臭氧分解产生的次级有机材料(SOM)中的24-DNP的光解速率提高了一个数量级以上。 α-pine烯。降低温度降低了SOM中24-DNP的光解速率,而降低了辛醇中24-DNP的光解速率,有效活化能分别为53 kJ / mol和12 kJ / mol。我们讨论增加SOM基质的粘度限制分子运动,从而抑制氢原子转移到光激发的24-DNP的可能性。据我们所知,这是关于基质以及可能的粘度对SOM中大气光化学反应速率的重大影响的首次报道。这表明有机气溶胶中光化学过程的速率将取决于相对湿度和温度,进而取决于海拔高度。结果进一步表明,SOM中的光化学可能在大气有机物的转化中起关键作用。例如,24-DNP和其他硝基芳族化合物应易于在有机颗粒物质中进行光降解,这对于预测其环境命运和影响具有重要意义。

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