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首页> 外文期刊>Human and ecological risk assessment >Spatial Assessment of Heavy Metals in Surface Soil from Klang District (Malaysia): An Example from a Tropical Environment
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Spatial Assessment of Heavy Metals in Surface Soil from Klang District (Malaysia): An Example from a Tropical Environment

机译:马来西亚巴生地区表层土壤中重金属的空间评估:以热带环境为例

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摘要

Heavy metals (Al, Cd, Co, Cr, Cu, Fe, Pb, Zn) in surface soil of Klang district were determined and multivariate analysis was used to understand their potential sources. The total and bioavailability of concentrations were used in identifying the potential risks to the ecology and human health. The means for the total heavy metal concentrations were found to be in the order of Fe > Al > Zn > Pb > Cu > Cr > Co > Cd, while the means for the bioavailability concentrations were found to be in the order of Al > Fe > Zn > Cu > Co > Cd > Pb > Cr. Principal Component Analysis showed Principal Component 1 as being of natural origin whereas Principal Components 2, 3, and 4 were associated with mixed anthropogenic sources, such as traffic and industrial emissions, organic matter, and granulometric fractions. Potential ecological risk assessment indicated an overall low ecological risk. Spatial assessment of non-carcinogenic risks showed that the Hazard Index values were more than one in Johan Setia, due to biomass burning of peat swamps exploited for agricultural development. While for spatial assessment of carcinogenic risks, the Lifetime Cancer Risk values were in the limit (1 x 10(-5)), indicating low cancer inducing risks. Nevertheless, with intense development pressure in the Klang district could overlap pollution inputs in the future.
机译:对巴生地区表层土壤中的重金属(Al,Cd,Co,Cr,Cu,Fe,Pb,Zn)进行了测定,并通过多变量分析来了解其潜在来源。浓度的总和生物利用度用于确定对生态和人类健康的潜在风险。发现总重金属浓度的平均值为Fe> Al> Zn> Pb> Cu> Cr> Co> Cd,而生物利用度浓度的平均值为Al> Fe >锌>铜>钴>镉>铅>铬主成分分析表明,主成分1是自然起源的,而主成分2、3和4与混合的人为来源相关,例如交通和工业排放,有机物和粒度分数。潜在的生态风险评估表明总体生态风险较低。对非致癌风险的空间评估表明,由于农业开发利用的泥炭沼泽的生物质燃烧,在约翰·塞蒂亚市,危害指数值超过一个。在进行致癌风险的空间评估时,“终生癌症风险”值处于限值(1 x 10(-5))中,表明较低的致癌风险。然而,随着巴生地区的巨大发展压力,未来污染输入可能会重叠。

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