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Source Apportionment for Water Soluble Organic Matter of Submicron Aerosol: A Comparison between Foggy and Nonfoggy Episodes

机译:亚微米气溶胶水溶性有机物的源分配:有雾事件与无雾事件的比较

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An extensive filter-based ambient aerosol measurement was carried out at a region that is mostly affected by fog almost every winter. A few fogwater samples were also collected during the study period. Water soluble organic matter (WSOM) was extracted in the aqueous media. The filter extracts and fogwater were analyzed for their chemical constituents using a High Resolution-Time of Flight-Aerosol Mass Spectrometer (HR-ToF-AMS). Data from the HR-ToF-AMS were used in positive matrix factorization (PMF) for the source apportionment to understand the sources of WSOM. Three major sources were identified, namely water soluble biomass burning organic aerosol (WS-BBOA), water soluble oxygenated organic aerosol (WS-OOA), and water soluble primary aerosol (WS-PA). The contributions of WS-BBOA and WS-OOA to WSOM were lower during foggy episodes than during clear (nonfoggy) episodes. The wet scavenging and removal of the aerosols from these sources were the prime causes of their lower contributions. The contribution of WS-PA to WSOM was higher during foggy episodes than during nonfoggy episodes. The higher contribution of this source is attributed to the accumulation of aerosol generated from this source, due to poor dispersion and the calm conditions prevalent during foggy episodes. Surprisingly, the contribution of WS-PA to WSOM was highest among the three sources during both foggy and nonfoggy episodes.
机译:几乎每个冬季,在一个主要受雾影响的区域进行了基于过滤器的广泛环境气溶胶测量。在研究期间还收集了一些雾水样品。在水性介质中提取水溶性有机物(WSOM)。使用高分辨飞行时间气溶胶质谱仪(HR-ToF-AMS)分析了过滤器提取物和雾水的化学成分。来自HR-ToF-AMS的数据用于正矩阵分解(PMF)中以进行源分配,以了解WSOM的源。确定了三个主要来源,即水溶性生物质燃烧有机气溶胶(WS-BBOA),水溶性含氧有机气溶胶(WS-OOA)和水溶性一次气溶胶(WS-PA)。在有雾事件中,WS-BBOA和WS-OOA对WSOM的贡献要比无雾事件中的低。从这些来源进行湿气清除和去除气溶胶是造成其贡献降低的主要原因。在有雾事件中,WS-PA对WSOM的贡献要高于无雾事件。该源的较高贡献归因于该源产生的气溶胶的积累,这是由于分散差和有雾事件期间普遍存在的平静条件所致。令人惊讶的是,在有雾和无雾事件中,WS-PA对WSOM的贡献在三个来源中最高。

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