首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Real-time measurements of ambient aerosols in a polluted Indian city: Sources, characteristics, and processing of organic aerosols during foggy and nonfoggy periods
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Real-time measurements of ambient aerosols in a polluted Indian city: Sources, characteristics, and processing of organic aerosols during foggy and nonfoggy periods

机译:在受污染的印度城市中实时测量环境气溶胶:有雾和无雾时期有机气溶胶的来源,特征和加工

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A detailed time-resolved chemical characterization of ambient nonrefractory submicron aerosols (NR-PM1) was conducted for the first time in India. The measurements were performed during the winter (November 2011 to January 2012) in a heavily polluted city of Kanpur, which is situated in the Indo-Gangetic Plain. Real-time measurements provided new insights into the sources and evolution of organic aerosols (OA) that could not be obtained using previously deployed filter-based measurements at this site. The average NR-PM1 loadingwas very high (>100 μg/m~3) throughout the study, with OA contributing approximately 70% of the total aerosol mass. Source apportionment of the OA using positive matrix factorization revealed large contributions from fresh and aged biomass burning OA throughout the entire study period. A back trajectory analysis showed that the polluted air masses were affected by local sources and distant source regions where the burning of paddy residues occurs annually during winter. Several fog episodes were encountered during the study, and the OA composition varied between foggy and nonfoggy periods, with higher oxygen to carbon (O/C) ratios during the foggy periods. The evolution of OA and their elemental ratios (O:C and H:C) were investigated for the possible effects of fog processing.
机译:在印度首次对环境难熔亚微米气溶胶(NR-PM1)进行了详细的时间分辨化学表征。这些测量是在冬季(2011年11月至2012年1月)在污染重重的坎普尔城市进行的,坎普尔位于印度恒河平原。实时测量提供了对有机气溶胶(OA)的来源和演变的新见解,而使用该站点以前使用的基于过滤器的测量无法获得这些信息。在整个研究中,平均NR-PM1含量非常高(> 100μg/ m〜3),其中OA占总气溶胶质量的70%。使用正矩阵分解的OA的源分配显示,在整个研究期间,新鲜和老化的生物质燃烧OA做出了巨大贡献。反向轨迹分析表明,受污染的空气团受当地源和遥远源区的影响,在冬季,每年都会发生稻田残留物燃烧。在研究过程中遇到了几次起雾事件,并且有雾和无雾期间的OA组成各不相同,在有雾期间氧与碳(O / C)的比率更高。研究了OA的演变及其元素比(O:C和H:C)对雾处理的可能影响。

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