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大气气溶胶颗粒的化学性质与组成

Chemistry and composition of atmospheric aerosol particles.

作者信息

Kolb Charles E, Worsnop Douglas R

机构信息

Center for Aerosol and Cloud Chemistry, Aerodyne Research, Inc., Billerica, Massachusetts 01821-3976, USA.

出版信息

Annu Rev Phys Chem. 2012;63:471-91. doi: 10.1146/annurev-physchem-032511-143706. Epub 2012 Jan 30.

Abstract

For more than two decades a cadre of physical chemists has focused on understanding the formation processes, chemical composition, and chemical kinetics of atmospheric aerosol particles and droplets with diameters ranging from a few nanometers to ∼10,000 nm. They have adapted or invented a range of fundamental experimental and theoretical tools to investigate the thermochemistry, mass transport, and chemical kinetics of processes occurring at nanoscale gas-liquid and gas-solid interfaces for a wide range of nonideal, real-world substances. State-of-the-art laboratory methods devised to study molecular spectroscopy, chemical kinetics, and molecular dynamics also have been incorporated into field measurement instruments that are deployed routinely on research aircraft, ships, and mobile laboratories as well as at field sites from megacities to the most remote jungle, desert, and polar locations. These instruments can now provide real-time, size-resolved aerosol particle physical property and chemical composition data anywhere in Earth's troposphere and lower stratosphere.

摘要

二十多年来,一批物理化学家专注于了解直径从几纳米到约10000纳米的大气气溶胶颗粒和液滴的形成过程、化学成分及化学动力学。他们采用或发明了一系列基础实验和理论工具,以研究各种非理想的现实世界物质在纳米级气液和气固界面发生的过程中的热化学、质量传输及化学动力学。为研究分子光谱、化学动力学和分子动力学而设计的最先进实验室方法,也已被纳入实地测量仪器中,这些仪器常规部署在研究飞机、船舶和移动实验室,以及从大城市到最偏远的丛林、沙漠和极地地区的实地站点。现在,这些仪器能够在地球对流层和低平流层的任何地方提供实时的、按粒径分辨的气溶胶颗粒物理性质和化学成分数据。

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