Chemical and Physical Properties of Indoor Aerosols

T. Vu, R. Harrison
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引用次数: 6

Abstract

Air pollution presents one of the greatest health risks worldwide; hence indoor pollutants have received considerable attention, with a rapidly increasing number of publications in recent decades. This chapter reviews and updates the state of knowledge on indoor aerosols with a focus on their behaviour, physicochemical properties and implications for health assessment studies. It begins with a brief outline of fundamental aerosol dynamics (i.e. deposition, coagulation, evaporation and nucleation) and the main factors that control and affect the concentration and behaviour of aerosols indoors. It then summarizes the concentrations and physicochemical profiles of aerosols in different major indoor sources and microenvironments such as homes, offices and schools. Implications of particle properties for lung dose calculations are discussed. Based on this work, it is concluded that indoor aerosols show a range of particle size distributions and chemical compositions, depending on different indoor emissions and aerosol indoor dynamics. Household aerosols are identified as a main contributor to the total and regional lung dose of ambient particles, especially when expressed by number dose.
室内气溶胶的化学和物理性质
空气污染是全世界最大的健康风险之一;因此,室内污染物受到了相当大的关注,近几十年来的出版物数量迅速增加。本章回顾和更新了室内气溶胶的知识状况,重点是它们的行为、物理化学性质和对健康评估研究的影响。它首先简要概述了基本的气溶胶动力学(即沉积,凝固,蒸发和成核)以及控制和影响室内气溶胶浓度和行为的主要因素。然后总结了不同主要室内源和微环境(如家庭、办公室和学校)中气溶胶的浓度和物理化学特征。讨论了微粒性质对肺剂量计算的影响。基于这项工作,我们得出结论,室内气溶胶显示出一系列的粒径分布和化学成分,这取决于不同的室内排放和气溶胶室内动力学。家用气溶胶被确定为环境颗粒总剂量和区域肺剂量的主要贡献者,特别是当以数量剂量表示时。
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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