Envair/Aerochem, Placitas, New Mexico, USA.
J Air Waste Manag Assoc. 2013 Apr;63(4):377-404. doi: 10.1080/10962247.2012.760499.
Worldwide interest in atmospheric aerosols has emerged since the late 20th century as a part of concerns for air pollution and radiative forcing of the earth's climate. The use of aircraft and balloons for sampling and the use of remote sensing have dramatically expanded knowledge about tropospheric aerosols. Our survey gives an overview of contemporary tropospheric aerosol chemistry based mainly on in situ measurements. It focuses on fine particles less than 1-2.5 microm in diameter. The physical properties of particles by region and altitude are exemplified by particle size distributions, total number and volume concentration, and optical parameters such as extinction coefficient and aerosol optical depth. Particle chemical characterization is size dependent, differentiated by ubiquitous sulfate, and carbon, partially from anthropogenic activity. Large-scale particle distributions extend to intra- and intercontinental proportions involving plumes from population centers to natural disturbances such as dust storms and vegetation fires. In the marine environment, sea salt adds an important component to aerosols. Generally, aerosol components, most of whose sources are at the earth's surface, tend to dilute and decrease in concentration with height, but often show different (layered) profiles depending on meteorological conditions. Key microscopic processes include new particle formation aloft and cloud interactions, both cloud initiation and cloud evaporation. Measurement campaigns aloft are short term, giving snapshots of inherently transient phenomena in the troposphere. Nevertheless, these data, combined with long-term data at the surface and optical depth and transmission observations, yield a unique picture of global tropospheric particle chemistry.
自 20 世纪后期以来,人们对大气气溶胶的兴趣日益浓厚,这是对空气污染和地球气候辐射强迫的关注的一部分。使用飞机和气球进行采样以及遥感的使用极大地扩展了对对流层气溶胶的了解。我们的调查主要基于现场测量,概述了当代对流层气溶胶化学。它侧重于直径小于 1-2.5 微米的细颗粒。通过区域和海拔的颗粒物理性质,例如粒径分布、总数量和体积浓度以及光学参数(例如消光系数和气溶胶光学深度)来举例说明。颗粒化学特性与尺寸有关,与人为活动有关的硫酸盐和碳部分不同。大规模的颗粒分布扩展到洲际和大陆内比例,涉及来自人口中心的羽流到自然干扰,如沙尘暴和植被火灾。在海洋环境中,海盐是气溶胶的一个重要组成部分。通常,气溶胶成分的大部分来源在地球表面,随着高度的增加而稀释和浓度降低,但通常根据气象条件显示不同的(分层)分布。关键的微观过程包括高空新粒子的形成和云相互作用,包括云的初始形成和云的蒸发。高空的测量活动是短期的,只能捕获对流层中固有瞬态现象的快照。尽管如此,这些数据与地表和光学深度以及传输观测的长期数据相结合,为全球对流层颗粒化学提供了独特的图景。