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Organic and Elemental Carbon in Atmospheric Fine Particulate Matter in an Animal Agriculture Intensive Area in North Carolina: Estimation of Secondary Organic Carbon Concentrations

机译:北卡罗莱纳州动物农业集约区大气细颗粒物质中的有机碳和元素碳:次级有机碳浓度的估算

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Carbonaceous components contribute significant fraction of fine particulate matter (PM2.5). Study of organic carbon (OC) and elemental carbon (EC) in PM2.5 may lead to better understanding of secondary organic carbon (SOC) formation. This year-long (December 2008 to December 2009) field study was conducted in an animal agriculture intensive area in North Carolina of United States. Samples of PM2.5 were collected from five stations located in an egg production facility and its vicinities. Concentrations of OC/EC and thermograms were obtained using a thermal-optical carbon analyzer. Average levels of OC in the egg production house and at ambient stations were 42.7 μg/m3 and 3.26 - 3.47 μg/m3, respectively. Average levels of EC in the house and at ambient stations were 1.14 μg/m3 and 0.36 - 0.42 μg/m3, respectively. The OC to total carbon (TC) ratios at ambient stations exceeded 0.67, indicating a significant fraction of SOC presented in PM2.5. Principal factor analysis results suggested that possible major source of in-house PM2.5 was from poultry feed and possible major sources of ambient PM2.5 was from contributions of secondary inorganic and organic PM. Using the OC/EC primary ratio analysis method, ambient stations SOC fractions ranged from 68% to 87%. These findings suggested that SOC could appreciably contribute to total PM2.5 mass concentrations in this agriculture intensive area.
机译:碳质成分占细小颗粒物(PM2.5)的比重很大。对PM2.5中有机碳(OC)和元素碳(EC)的研究可能有助于更好地理解次级有机碳(SOC)的形成。这项为期一年(2008年12月至2009年12月)的田野研究在美国北卡罗来纳州的一个动物农业密集区进行。从位于鸡蛋生产设施及其附近的五个站点收集了PM2.5样品。使用热光碳分析仪获得OC / EC和热分析图的浓度。产蛋室和环境站的平均OC含量分别为42.7μg/ m3和3.26-3.47μg/ m3。房屋中和环境站中EC的平均水平分别为1.14μg/ m3和0.36-0.42μg/ m3。环境站的OC与总碳(TC)之比超过0.67,表明PM2.5中存在很大一部分SOC。主因子分析结果表明,室内PM2.5的可能主要来源是禽类饲料,周围PM2.5的可能主要来源是无机和有机次生PM的贡献。使用OC / EC一次比率分析方法,环境站的SOC分数范围从68%至87%。这些发现表明,在这个农业密集地区,SOC可以显着促进总PM2.5质量浓度。

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