Methods for the measurement of air pollutants.

S. Tiwari, M. Neha
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引用次数: 1

Abstract

Abstract Currently, air pollution is one of the most imperative problems and has a major role in global climate change and premature deaths throughout the world. Various types of air pollutants (e.g. particulate matter, NOx, SOx, CO and O3) are present in the atmosphere and have significant effects on human health, agriculture, weather and climate. Accurate measurements of air pollutants on local, regional and global levels at high spatial and temporal resolution are needed to quantify their distribution and resulting impacts. Real-time ground-level measurements of air pollutants help to understand secondary aerosol formation through atmospheric chemical transformation. On the other hand, satellite measurements of air pollutants and trace gases provide a good platform to understand the current scenario of air quality and future climate change on a global scale. Measuring air pollutants with higher accuracy is challenging because of a variety of considerations, including their chemical composition, lifetime, emission sources and complex instrumentation. A continuous improvement in air pollutant measurement techniques and instrumentation has occurred during the last two decades; however, more efforts are needed to achieve more realistic data with higher accuracy. In this chapter, an overview of various measurement techniques of air pollutants (from ground-based and satellite-based measurements) are presented.
空气污染物的测量方法。
当前,空气污染是最迫切的问题之一,在全球气候变化和全球过早死亡中起着重要作用。大气中存在各种类型的空气污染物(如颗粒物、氮氧化物、硫氧化物、一氧化碳和臭氧),对人类健康、农业、天气和气候产生重大影响。需要在地方、区域和全球各级以高空间和时间分辨率精确测量空气污染物,以量化它们的分布和由此产生的影响。空气污染物的实时地面测量有助于了解通过大气化学转化形成的二次气溶胶。另一方面,对空气污染物和微量气体的卫星测量提供了一个很好的平台,可以了解当前全球范围内空气质量和未来气候变化的情况。由于各种考虑因素,包括其化学成分,寿命,排放源和复杂的仪器,以更高的精度测量空气污染物具有挑战性。在过去二十年中,空气污染物测量技术和仪器不断得到改进;然而,要获得更真实、更准确的数据,还需要付出更多的努力。在本章中,概述了各种空气污染物的测量技术(从地面和卫星测量)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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