首页> 外文OA文献 >Arsenic speciation and mobility in mine wastes from audcopper–arsenic mine in Devon, UK : an SEM, XAS, sequentialudchemical extraction study
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Arsenic speciation and mobility in mine wastes from audcopper–arsenic mine in Devon, UK : an SEM, XAS, sequentialudchemical extraction study

机译:砷的物种形成和矿物质的流动性来自于英国德文郡的铜砷矿:sEm,Xas,顺序 ud化学萃取研究

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摘要

The nature of As speciation is a determining factor for As mobility in mine wastes. In this study, scanning electron microscopy (SEM), X-ray absorption spectroscopy andudsequential chemical extraction methods were used for the environmental, mineralogical and genetic characterisation of mine spoil and calciner wastes from Devon GreatudConsols Mine, an abandoned copper–arsenic mine in Devon, UK. The geochemical control of As-bearing phases on dissolved As during leaching was investigated.udArsenic is mainly present as As(V) co-precipitated or adsorbed with, or on, iron oxyhydroxides. The water extracts from the mine spoil and calciner wastes indicateduda generally low dissolution of As, especially in sandy tailings (Aswater soluble 0.0004% of total As content). Thermodynamic calculations did not identify a major As phaseudcontrolling the composition of the water leachates, which suggests a process of desorption of iron oxyhydroxide-bound As as the source of As in the solution. A relative higher As mobility (Aswater soluble 3.7% of total As content) was found in the waste material with an alkaline pH in the vicinity of the ore crusher. Available thermodynamic data supported by SEM evidence and chemical extraction data suggest that calcium-arsenate phases such as weillite (CaHAsO4) and calcium–copper arsenates together with scorodite (FeAsO42H2O) and iron oxyhydroxides may alludcontribute to the higher As content in the alkaline waste leachates. The results indicate the importance of considering the nature of As in mine waste management.
机译:砷形态的性质是矿山废物中砷流动性的决定因素。在这项研究中,使用扫描电子显微镜(SEM),X射线吸收光谱法和随后的化学提取方法对德文郡Great udConsols矿(废弃的铜砷)的矿渣和煅烧炉废物的环境,矿物学和遗传特征进行了表征。英国德文郡的矿山研究了含砷相在浸出过程中对溶解态As的地球化学控制。 ud砷主要以与氢氧化铁共沉淀或吸附的As(V)形式存在。从矿渣和煅烧炉废物中提取的水表明,砷的溶解度通常较低,尤其是在砂质尾矿中(水溶性的砷占总砷含量的0.0004%)。热力学计算未发现主要的As相控制水浸出物的组成,这表明结合氢氧化氧铁的As会解吸,As是溶液中As的来源。在矿石破碎机附近具有碱性pH值的废料中发现了相对较高的As迁移率(水溶性的总As含量的3.7%)。 SEM证据和化学提取数据支持的可用热力学数据表明,砷酸钙相(如硅藻土(CaHAsO4)和钙铜砷酸盐与臭葱石(FeAsO42H2O)和羟基氧化铁可能全部不助于碱性废物中较高的As含量渗滤液。结果表明在矿山废物管理中考虑砷的性质的重要性。

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