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A characterization of volatile organic compounds and secondary organic aerosol at a mountain site in the Southeastern United States

机译:美国东南部山区的挥发性有机化合物和次级有机气溶胶的特征

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Mean temperature anomalies in the Southeastern United States (SEUS) over the past century have reflected regional cooling hypothesized to be a result of an enhancement of warm season aerosol optical thickness caused by the oxidation of biogenic volatile organic compounds (VOCs). Aerosol and gas-phase VOC measurements were made at the Appalachian Atmospheric Interdisciplinary Research (AppalAIR) site in the southern Appalachian mountains of North Carolina during the summer of 2013 in an effort to characterize warm season chemistry. Organic aerosol (OA) chemistry was characterized through a positive matrix factorization analysis resolving a low-volatility, semi-volatile, and isoprene oxidation factor contributing 34 +/- 15, 24 +/- 12, and 42 +/- 17 %, respectively to the total observed OA. Volatile organic compound characterization described chemistry that was typical of rural background levels with periods of elevated hydrocarbon and urban tracer loading that varied with synoptic flow. Chemical, meteorological, and aerosol optical property data suggested that measurements made at the AppalAIR site are representative of background atmospheric chemistry in the SEUS. Annual background secondary organic aerosol (SOA) production in the SEUS was estimated to be 0.15-0.50 GgC yr(-1). Estimates of total and background SOA from this study provide evidence that the SEUS is a region of global significance in the context of global SOA budgets, and can be useful in understanding the extent of anthropogenic enhancement of summertime SOA compared to background levels.
机译:过去一个世纪以来,美国东南部(SEUS)的平均温度异常反映了区域降温,该降温被认为是由于生物源性挥发性有机化合物(VOC)氧化引起的暖季气溶胶光学厚度增加的结果。 2013年夏季,在北卡罗来纳州阿巴拉契亚山脉南部的阿巴拉契亚大气跨学科研究(AppalAIR)站点进行了气溶胶和气相VOC测量,以描述暖季化学特征。通过对低挥发性,半挥发性和异戊二烯氧化因子的正矩阵分解分析来表征有机气溶胶(OA)的化学性质,分别贡献34 +/- 15、24 +/- 12和42 +/- 17%总观察到的OA。挥发性有机化合物的表征描述了化学性质,这是农村本底水平的典型特征,其碳氢化合物升高时期和城市示踪剂负荷随天气流量而变化。化学,气象和气溶胶光学性质数据表明,在AppalAIR站点进行的测量代表SEUS中的背景大气化学。 SEUS的年度本底二次有机气溶胶(SOA)产量估计为0.15-0.50 GgC yr(-1)。这项研究对总体SOA和背景SOA的估计提供了证据,表明SEUS在全球SOA预算的背景下是具有全球意义的区域,并且对于了解与背景水平相比人为提高夏季SOA的程度很有用。

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