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有机气溶胶的相分离。

Phase separation in organic aerosol.

机构信息

Department of Chemistry, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Chem Soc Rev. 2017 Dec 11;46(24):7694-7705. doi: 10.1039/c6cs00783j.

Abstract

Organic aerosol is ubiquitous in the atmosphere, and impacts climate through the scattering and absorption of light and through the formation of nuclei for cloud droplets. These aerosol particles, which are composed of organic compounds and salts, are of great recent interest due to the complex chemistry that occurs within the particles as well as at the air-aerosol interface. Historically, organic aerosol was thought to undergo two phase transitions as the relative humidity around the particles is varied: efflorescence (crystallization) and deliquescence (water uptake). Recently, however, it was proposed that organic aerosol can undergo a phase transition in which liquid-liquid phase separation results in the formation of a particle with two liquid phases. This phenomenon has been recognized in the biophysical chemistry community for over a century, but atmospheric systems differ in several key aspects. Over the past 15 years, characterisation of the systems that undergo phase separation, the mechanisms by which this phase transition occurs, and the resultant morphologies have been investigated, sometimes with lingering questions. In addition, theory has been developed to model liquid-liquid phase separation in bulk systems. This review will cover these studies, focusing on experimental results, as well as covering recent results on the inhibition of liquid-liquid phase separation in nanoscale particles and studies that address the implications of this phase transition on climate-related properties of aerosol particles.

摘要

有机气溶胶在大气中无处不在,通过光的散射和吸收以及云滴成核来影响气候。这些气溶胶粒子由有机化合物和盐组成,由于粒子内部以及气-粒界面发生的复杂化学作用,近年来引起了人们的极大兴趣。历史上,人们认为有机气溶胶在颗粒周围的相对湿度变化时会经历两次相转变:“开花”(结晶)和“潮解”(吸水)。然而,最近有人提出,有机气溶胶可以经历一种相转变,其中液-液相分离导致形成具有两个液相的颗粒。这种现象在生物物理化学界已经被认识了一个多世纪,但大气系统在几个关键方面有所不同。在过去的 15 年中,对经历相分离的系统的特性、发生这种相转变的机制以及由此产生的形态进行了研究,有时还存在悬而未决的问题。此外,还开发了理论来模拟体相中的液-液相分离。这篇综述将涵盖这些研究,重点介绍实验结果,同时还涵盖了关于纳米颗粒中抑制液-液相分离的最新结果以及关于这种相转变对气溶胶颗粒与气候相关性质影响的研究。

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