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非均相化学反应对水性有机气溶胶科勒活化的影响。

Effect of Heterogeneous Chemical Reactions on the Köhler Activation of Aqueous Organic Aerosols.

作者信息

Djikaev Yuri S, Ruckenstein Eli

机构信息

Department of Chemical and Biological Engineering , SUNY at Buffalo , Buffalo , New York 14260 , United States.

出版信息

J Phys Chem A. 2018 May 3;122(17):4322-4337. doi: 10.1021/acs.jpca.8b01276. Epub 2018 Apr 18.

Abstract

We study some thermodynamic aspects of the activation of aqueous organic aerosols into cloud droplets considering the aerosols to consist of liquid solution of water and hydrophilic and hydrophobic organic compounds, taking into account the presence of reactive species in the air. The hydrophobic (surfactant) organic molecules on the surface of such an aerosol can be processed by chemical reactions with some atmospheric species; this affects the hygroscopicity of the aerosol and hence its ability to become a cloud droplet either via nucleation or via Köhler activation. The most probable pathway of such processing involves atmospheric hydroxyl radicals that abstract hydrogen atoms from hydrophobic organic molecules located on the aerosol surface (first step), the resulting radicals being quickly oxidized by ubiquitous atmospheric oxygen molecules to produce surface-bound peroxyl radicals (second step). These two reactions play a crucial role in the enhancement of the Köhler activation of the aerosol and its evolution into a cloud droplet. Taking them and a third reaction (next in the multistep chain of relevant heterogeneous reactions) into account, one can derive an explicit expression for the free energy of formation of a four-component aqueous droplet on a ternary aqueous organic aerosol as a function of four independent variables of state of a droplet. The results of numerical calculations suggest that the formation of cloud droplets on such (aqueous hydrophilic/hydrophobic organic) aerosols is most likely to occur as a Köhler activation-like process rather than via nucleation. The model allows one to determine the threshold parameters of the system necessary for the Köhler activation of such aerosols, which are predicted to be very sensitive to the equilibrium constant of the chain of three heterogeneous reactions involved in the chemical aging of aerosols.

摘要

我们研究了水性有机气溶胶活化成云滴的一些热力学方面,将气溶胶视为由水以及亲水和疏水有机化合物的液体溶液组成,并考虑了空气中反应性物种的存在。这种气溶胶表面的疏水(表面活性剂)有机分子可通过与一些大气物种的化学反应进行处理;这会影响气溶胶的吸湿性,进而影响其通过成核或科勒活化形成云滴的能力。这种处理最可能的途径涉及大气羟基自由基从位于气溶胶表面的疏水有机分子中提取氢原子(第一步),所产生的自由基迅速被普遍存在的大气氧分子氧化,生成表面结合的过氧自由基(第二步)。这两个反应在增强气溶胶的科勒活化及其向云滴的演化过程中起着关键作用。考虑到这两个反应以及第三个反应(在相关多相反应的多步链中的下一步),可以推导出关于三元水性有机气溶胶上四组分水滴形成自由能的显式表达式,该表达式是水滴四个独立状态变量的函数。数值计算结果表明,在这种(水性亲水/疏水有机)气溶胶上形成云滴最有可能是通过类似科勒活化的过程,而不是通过成核。该模型使人们能够确定此类气溶胶科勒活化所需的系统阈值参数,预计这些参数对气溶胶化学老化所涉及的三个多相反应链的平衡常数非常敏感。

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