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首页> 外文期刊>Journal of Science and Technology of Agriculture and Natural Resources >Source Identification of Aerosols in Atmosphere Using Geochemical Properties of Tracer Elements (The Case Study Area: City of Kermanshah)
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Source Identification of Aerosols in Atmosphere Using Geochemical Properties of Tracer Elements (The Case Study Area: City of Kermanshah)

机译:利用示踪元素的地球化学特征识别大气中的气溶胶(案例研究区域:克曼沙赫市)

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The purpose of this research was source identification of aerosols in atmosphere using geochemical properties in the city of Kermanshah. The concentrations of twenty elements consisting of K, Na, Ca, P, Cu, Ni, Pb, Cd, Se, Zn, Fe, Mg, B, Cr, Co, As, Mo, V were analyzed by ICP for 55 soil samples (in the height range of 600-1600m) and 41 aerosols samples. Source identification of aerosels using geochemical tracers was performed in two steps. In the first step, appropriate combination of tracer elements with high ability in the resolation of aerosol sources was chosen using the means comparison test and discriminate analysis. In the second step, the multivariate mixing model was used to determine the contribution of aerosol sources (geological and geomorphology types) to the production of aerosols in the study area. The results obtained from determination of the contributions of sources of aerosols (geological and geomorphological types) showed the UF formation (consisting of red marl and sandstone), with the height of 0-1400 mand the slope of 0-5%, could be regarded as the main contributor to the production of aerosols located in the city of Qasreshirin.
机译:这项研究的目的是利用克尔曼沙赫市的地球化学特征识别大气中的气溶胶。 ICP分析了55个土壤样品中的K,Na,Ca,P,Cu,Ni,Pb,Cd,Se,Zn,Fe,Mg,B,Cr,Co,As,Mo,V的20种元素的浓度(在600-1600m的高度范围内)和41个气溶胶样品。使用地球化学示踪剂识别航空器的来源分为两个步骤。第一步,使用均值比较测试和判别分析,选择在气溶胶源分离中具有较高分离能力的示踪元素的适当组合。第二步,使用多元混合模型确定研究区域内气溶胶来源(地质和地貌类型)对气溶胶生产的贡献。确定气溶胶来源(地质和地貌类型)的贡献结果表明,UF形成(由红色泥灰岩和砂岩组成),高度为0-1400,斜率为0-5%,可以认为是是位于Qasreshirin市的气雾剂生产的主要贡献者。

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