首页> 外文期刊>Environmental Science: Processes & Impacts >Using portable X-ray fluorescence spectrometry and GIS to assess environmental risk and identify sources of trace metals in soils of peri-urban areas in the Yangtze Delta region, China
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Using portable X-ray fluorescence spectrometry and GIS to assess environmental risk and identify sources of trace metals in soils of peri-urban areas in the Yangtze Delta region, China

机译:使用便携式X射线荧光光谱仪和GIS评估环境风险,并确定中国长江三角洲近郊地区土壤中的微量金属来源

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摘要

Portable X-ray fluorescence (PXRF) spectrometry may be very suitable for a fast and effective environmental assessment and source identification of trace metals in soils. In this study, topsoils (0-10 cm) at 139 sites were in situ scanned for total trace metals (Cr, Cu, Ni, Pb and Zn) and arsenic concentrations by PXRF in a typical town in Yangtze Delta region of Jiangsu province, China. To validate the utility of PXRF, 53 samples were collected from the scanning sites for the determination of selected trace metals using conventional methods. Based on trace metal concentrations detected by in situ PXRF, the contamination extent and sources of trace metals were studied via geo-accumulation index, multivariate analysis and geostatistics. The trace metal concentrations determined by PXRF were similar to those obtained via conventional chemical analysis. The median concentration of As, Cr, Cu, Ni, Pb and Zn in soils were 10.8, 56.4, 41.5, 43.5, 33.5, and 77.7 mg kg~(-1), respectively. The distribution patterns of Cr, Cu, Ni, Pb, and Zn were mostly affected by anthropogenic sources, while As was mainly derived from lithogenic sources. Overall, PXRF has been successfully applied to contamination assessment and source identification of trace metals in soils.
机译:便携式X射线荧光(PXRF)光谱仪可能非常适用于快速有效的环境评估和土壤中痕量金属的来源鉴定。在这项研究中,在江苏省长三角地区的一个典型城镇中,通过PXRF对139个站点的表层土壤(0-10 cm)进行了原位扫描,以检测总痕量金属(Cr,Cu,Ni,Pb和Zn)和砷浓度,中国。为了验证PXRF的效用,使用常规方法从扫描位置收集了53个样品,用于确定选定的痕量金属。基于原位PXRF检测到的痕量金属浓度,通过地质累积指数,多元分析和地统计学方法研究了痕量金属的污染程度和来源。通过PXRF测定的痕量金属浓度类似于通过常规化学分析获得的痕量金属浓度。土壤中砷,铬,铜,镍,铅和锌的中位数浓度分别为10.8、56.4、41.5、43.5、33.5和77.7 mg kg〜(-1)。 Cr,Cu,Ni,Pb和Zn的分布模式主要受人为来源的影响,而As主要来自成岩作用的来源。总体而言,PXRF已成功应用于土壤中痕量金属的污染评估和来源识别。

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