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Temporal Variability of Source-Specific Solvent-Extractable Organic Compounds in Coastal Aerosols over Xiamen, China

机译:厦门沿海气溶胶中特定于源的溶剂可萃取有机化合物的时间变化

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This study describes an analysis of ambient aerosols in a southeastern coastal city of China (Xiamen) in order to assess the temporal variability in the concentrations and sources of organic aerosols (OA). Molecular-level measurements based on a series of solvent extractable lipid compounds reveal inherent heterogeneity in OA, in which the concentration and relative contribution of at least three distinct components (terrestrial plant wax derived, marine/microbial and fossil fuel derived organic matter (OM)) exhibited distinct and systematic temporal variability. Plant wax lipids and associated terrestrial OM are influenced by seasonal variability in plant growth; marine/microbial lipids and associated marine OM are modulated by sea spill and temperature change, whereas fossil fuel derived OM reflects the anthropogenic utilization of fossil fuels originated from petroleum-derived sources and its temporal variation is strongly controlled by meteorological conditions (e.g., the thermal inversion layer), which is analogous to other air organic pollutions. A comparative study among different coastal cities was applied to estimate the supply of different sources of OM to ambient aerosols in different regions, where it was found that biogenic OM in aerosols over Xiamen was much lower than that of other cities; however, petroleum-derived OM exhibited a high level of contribution with a higher concentration of unresolved complex matters (UCM) and higher a ratio between UCM and resolved alkanes (UCM/R).
机译:这项研究描述了对中国东南沿海城市(厦门)的环境气溶胶的分析,以评估有机气溶胶(OA)的浓度和来源的时间变化。基于一系列可溶剂萃取的脂质化合物的分子水平测量揭示了OA中固有的异质性,其中至少三种不同成分(陆地植物蜡,海洋/微生物和化石燃料衍生的有机物(OM))的浓度和相对贡献)表现出明显而系统的时间变异性。植物蜡脂质和相关的地面OM受植物生长季节变化的影响;海洋/微生物脂质和相关的海洋有机质受到溢油和温度变化的调节,而矿物燃料衍生的有机质反映了人为利用石油来源的化石燃料,其时间变化受到气象条件(例如热能)的强烈控制。倒置层),类似于其他空气有机污染。通过对不同沿海城市的比较研究,估计了不同地区不同气溶胶对不同地区的气溶胶的供应量,发现厦门地区气溶胶中的生物气态OM远低于其他城市。然而,石油衍生的OM表现出高水平的贡献,其中未解决的复杂物质(UCM)浓度更高,并且UCM和已分解的烷烃之间的比例更高(UCM / R)。

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