首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Sequestration of As and Mo in uranium mill precipitates (pH 1.5-9.2): An XAS study
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Sequestration of As and Mo in uranium mill precipitates (pH 1.5-9.2): An XAS study

机译:XAS研究表明,铀和钼在铀厂沉淀物中的螯合(pH 1.5-9.2)

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摘要

As- and Mo- bearing secondary mineral phases formed during the neutralization of uranium mill wastes require characterization. Previous studies indicate that arsenate and molybdate adsorbed to ferrihydrite are the dominant controls in the tailings materials. A lab-scale plant was employed to characterize secondary precipitates from a variety of ore blends. Through total elemental analysis of precipitates and As and Mo K-edge X-ray absorption spectroscopy, different ratios of contributing phases were determined for each pH stage (4.2, 6.5, and 9.2) of the neutralization process. Overall, arsenate adsorbed to ferrihydrite was the dominant As mineral phase regardless of pH or sample blend (53-77%), with fractional contribution from ferric arsenates, and adsorption to aluminum phases. Molybdate adsorbed to ferrihydrite was the dominant Mo mineral phase, with fractional contribution decreasing with increasing pH (100-69%). The characterization of these phases in the secondary precipitates provides further understanding of the contributing mineral species in tailing facilities. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:在铀中和厂废物中和过程中形成的含砷和含钼的次级矿物相需要进行表征。先前的研究表明,吸附到亚铁酸盐上的砷酸盐和钼酸盐是尾矿中的主要控制物。实验室规模的工厂用于表征各种矿石混合物中的二次沉淀物。通过对沉淀物进行全元素分析,以及As和Mo K-edge X射线吸收光谱法,确定了中和过程的每个pH阶段(4.2、6.5和9.2)的贡献相比率。总体而言,无论pH值或样品掺混物如何,吸附到亚铁酸盐上的砷酸盐都是主要的As矿物相,其中砷酸铁的分数贡献很大,并吸附到铝相上。吸附到水铁矿上的钼酸盐是主要的Mo矿物相,随pH值的增加(100-69%),分数贡献减小。次生沉淀物中这些相的特征提供了对尾矿设施中贡献矿物质种类的进一步了解。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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