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Microscale Investigation of Arsenic Distribution and Species in Cement Product from Cement Kiln Coprocessing Wastes

机译:水泥窑协同处理废物中水泥制品中砷的分布和形态的微观研究

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摘要

To improve the understanding of the immobilization mechanism and the leaching risk of Arsenic (As) in the cement product from coprocessing wastes using cement kiln, distribution and species of As in cement product were determined by microscale investigation methods, including electron probe microanalysis (EPMA) and X-ray absorption spectroscopy. In this study, sodium arsenate crystals (Na3AsO412H2O) were mixed with cement production raw materials and calcined to produce cement clinker. Then, clinker was mixed water to prepare cement paste. EPMA results showed that As was generally distributed throughout the cement paste. As content in calcium silicate hydrates gel (C-S-H) was in low level, but higher than that in other cement mineral phases. This means that most of As is expected to form some compounds that disperse on the surfaces of cement mineral phases. Linear combination fitting (LCF) of the X-ray absorption near edge structure spectra revealed that As in the cement paste was predominantly As(V) and mainly existed as Mg3(AsO4)2, Ca3(AsO4)2, and Na2HAsO4.
机译:为了更好地了解固结机理和使用水泥窑从协同处理废物中水泥产品中砷(As)的浸出风险,通过包括电子探针微分析(EPMA)在内的微观研究方法确定了水泥产品中As的分布和种类。和X射线吸收光谱。在这项研究中,将砷酸钠晶体(Na3AsO412H2O)与水泥生产原料混合并煅烧以生产水泥熟料。然后,将熟料与水混合以制备水泥浆。 EPMA结果表明,As通常分布在整个水泥浆中。由于硅酸钙水合物凝胶(C-S-H)的含量较低,但高于其他水泥矿相。这意味着大多数砷预计会形成一些散布在水泥矿物相表面的化合物。 X射线吸收的近边缘结构光谱的线性组合拟合(LCF)表明,水泥浆中的As主要为As(V),主要以Mg3(AsO4)2,Ca3(AsO4)2和Na2HAsO4的形式存在。

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