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首页> 外文期刊>Minerals >Mineralogical Study of a Biologically-Based Treatment System That Removes Arsenic, Zinc and Copper from Landfill Leachate
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Mineralogical Study of a Biologically-Based Treatment System That Removes Arsenic, Zinc and Copper from Landfill Leachate

机译:基于生物处理系统去除垃圾渗滤液中砷,锌和铜的矿物学研究

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Mineralogical characterization by X-ray diffraction (XRD) and a high throughput automated quantitative evaluation of minerals by scanning electron microscopy (QEMSCAN) was conducted on samples from a sulphate-reducing biochemical reactor (BCR) treating high concentrations of metals (As, Zn, Cu) in smelter waste landfill seepage. The samples were also subjected to energy dispersive X-ray (EDX) analysis of specific particles. The bulk analysis results revealed that the samples consisted mainly of silicate and carbonate minerals. More detailed phase analysis indicated four different classes: zinc-arsenic sulphosalts/sulphates, zinc-arsenic oxides, zinc phosphates and zinc-lead sulphosalts/sulphates. This suggests that sulphates and sulphides are the predominant types of Zn and As minerals formed in the BCR. Sphalerite (ZnS) was a common mineral observed in many of the samples. In addition, X-ray point analysis showed evidence of As and Zn coating around feldspar and amphibole particles. The presence of arsenic-zinc-iron, with or without cadmium particles, indicated arsenopyrite minerals. Copper-iron-sulphide particles suggested chalcopyrite (CuFeS2) and tennantite (Cu,Fe)12As4S13. Microbial communities found in each sample were correlated with metal content to describe taxonomic groups associated with high-metal samples. The research results highlight mineral grains that were present or formed at the site that might be the predominant forms of immobilized arsenic, zinc and copper.
机译:对来自硫酸盐还原生化反应器(BCR)的样品进行X射线衍射(XRD)的矿物学表征和通过扫描电子显微镜(QEMSCAN)进行的矿物的高通量自动定量评估,该样品处理了高浓度的金属(As,Zn,铜)在冶炼厂垃圾掩埋场中渗出。还对样品进行了特定颗粒的能量色散X射线(EDX)分析。大量分析结果表明,样品主要由硅酸盐和碳酸盐矿物组成。更详细的相分析指出了四种不同的类别:砷化锌硫酸锌/硫酸盐,砷化锌氧化物,磷酸锌和铅锌硫酸盐/硫酸盐。这表明硫酸盐和硫化物是BCR中形成的Zn和As矿物的主要类型。闪锌矿(ZnS)是在许多样品中观察到的常见矿物。此外,X射线点分析显示了长石和闪石颗粒周围有As和Zn涂层的迹象。砷锌铁的存在,不论有无镉颗粒,都表明毒砂矿物。硫化铁铜颗粒建议为黄铜矿(CuFeS 2 )和球铁矿(Cu,Fe) 12 As 4 S 13 。将每个样品中发现的微生物群落与金属含量相关联,以描述与高金属样品相关的分类学类别。研究结果突出了该地点存在或形成的矿物质,可能是固定化砷,锌和铜的主要形式。

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