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Water-soluble organic carbon (WSOC) and its temperature-resolved carbon fractions in atmospheric aerosols in Beijing

机译:北京大气气溶胶中的水溶性有机碳(WSOC)及其温度分解碳组分

摘要

Investigation of temperature-resolved carbon fractions of water-soluble organic carbon (WSOC) can improve our understanding of the chemical properties, formation processes and sources of WSOC in aerosols. We developed a method that can examine different temperature-resolved carbon fractions of WSOC and used this method to characterize aerosol samples (n = 102) collected from an urban site in Beijing in 2010-2011. The aerosol composition data including inorganic ions, elements and temperature-resolved carbon fractions of WSOC were used as input of positive matrix factorization (PMF) model to investigate the sources of WSOC. The results showed that the mean concentrations of WSOC were 10.2 mu g m(-3) with increased values in winter and decreased values in summer, while WSOC/OC ratios (mean: 51.7%) were higher in spring and summer than in fall and winter. The sampling artifacts of WSOC (18.2%) were higher than those of OC (13.4%). Though WSOC was significantly influenced by biomass burning in spring and winter, the strong correlations between WSOC and other secondary components suggested that WSOC was secondary in nature. Results of temperature-resolved carbon fractions of OC and WSOC showed that WSOC/OC ratios for different carbon fractions had the highest value of 0.92 and lowest value of 0.30. PMF analysis identified four factors, three of which were associated with three organic polar compounds groups (low, medium, and high molecular weight compounds) based on their thermal evolution features, and one of which was attributed to inorganic secondary formation processes. Annually, the contributions of four factors were 20.5%, 46.2%, 12.4% and 20.9%, respectively. (C) 2016 Elsevier B.V. All rights reserved.
机译:对水溶性有机碳(WSOC)的温度分解碳馏分进行研究可以提高我们对气溶胶中WSOC的化学性质,形成过程和来源的了解。我们开发了一种方法,该方法可以检查WSOC的不同温度分解碳分数,并使用该方法来表征2010-2011年从北京某城市站点收集的气溶胶样品(n = 102)。将WSOC的无机离子,元素和温度分辨碳分数组成的气溶胶成分数据用作正矩阵分解(PMF)模型的输入,以研究WSOC的来源。结果表明,WSOC的平均浓度为10.2μgm(-3),冬季升高,夏季降低,而春季和夏季的WSOC / OC比(平均值:51.7%)高于秋季和冬季。 。 WSOC(18.2%)的抽样伪像高于OC(13.4%)的抽样伪像。尽管WSOC在春季和冬季受到生物质燃烧的显着影响,但WSOC与其他次要成分之间的强相关性表明WSOC本质上是次要的。 OC和WSOC的温度分辨碳分数的结果表明,不同碳分数的WSOC / OC比的最高值为0.92,最低值为0.30。 PMF分析根据其热演化特征确定了四个因素,其中三个与三个有机极性化合物组(低,中和高分子量化合物)相关,其中一个与无机次级形成过程有关。每年,四个因素的贡献分别为20.5%,46.2%,12.4%和20.9%。 (C)2016 Elsevier B.V.保留所有权利。

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