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首页> 外文期刊>Journal of Applied Geophysics >Vertical and horizontal distribution of magnetic susceptibility and metal contents in an industrial district of central Iran
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Vertical and horizontal distribution of magnetic susceptibility and metal contents in an industrial district of central Iran

机译:伊朗中部工业区磁化率和金属含量的垂直和水平分布

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This study was conducted to determine the vertical and horizontal distribution of selected metals and magnetic susceptibility (χlf) in an industrial site located in Isfahan province, central Iran. For this purpose, we used a grid sampling methodology and excavated 202 profiles. Soil samples were then collected from 0-30, 60-90, and 120-150. cm depths. The mass magnetic susceptibility (χ) of the soil samples was measured at both low and high frequencies (χlf and χhf) using the Bartington MS2 dual frequency sensor; and χfd was also calculated. Soil samples were also analyzed for iron (Fe), manganese (Mn), lead (Pb), zinc (Zn), copper (Cu), nickel (Ni), chromium (Cr) and cobalt (Co) concentrations. The results showed that there were positive significant correlations among selected metals including Zn, Pb, Fe and Mn, which were mainly added through coal fly ash from an iron smelting factory at the studied site, while the concentration of Ni, Cr and Co was mainly controlled by the parent material of the soils. The trends in results at the site of study were similar in vertical and horizontal distribution for the industrial originated metals as judged by pollution load index (PLI) using χlf. The results of SEM/EDX also confirmed the presence of spheroid of magnetic particles in the surface soil samples taken in close proximity of the factory. Based on the results using the contamination factors (CF) determined for selected metals, the following order was observed: Pb. >. Zn. >. Mn. >. Fe. >. Cu. >. Ni. ≥. Co. >. Cr. The results also suggested that magnetic methods could be used to estimate the metal contamination from anthropogenic sources in industrial soils.
机译:进行这项研究是为了确定位于伊朗中部伊斯法罕省的工业现场中所选金属的垂直和水平分布以及磁化率(χlf)。为此,我们使用了网格采样方法并挖掘了202个剖面。然后从0-30、60-90和120-150收集土壤样品。厘米深。使用Bartington MS2双频传感器在低频和高频(χlf和χhf)下测量土壤样品的质量磁化率(χ)。并且还计算了χfd。还分析了土壤样品中的铁(Fe),锰(Mn),铅(Pb),锌(Zn),铜(Cu),镍(Ni),铬(Cr)和钴(Co)浓度。结果表明,所选择的金属元素Zn,Pb,Fe和Mn之间呈显着的正相关,这些元素主要是通过研究现场的一家炼铁厂的粉煤灰添加的,而Ni,Cr和Co的浓度主要是由土壤的母质控制。根据污染负荷指数(PLI)使用χlf判断,工业现场金属的垂直和水平分布在研究现场的结果趋势相似。 SEM / EDX的结果还证实,在工厂附近采集的表层土壤样品中存在磁性颗粒的球体。基于使用针对选定金属确定的污染因子(CF)的结果,观察到以下顺序:Pb。 >。锌>。锰>。铁>。铜>。你。 ≥。公司>。铬结果还表明,磁性方法可用于估算工业土壤中人为来源的金属污染。

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