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首页> 外文期刊>Protein and peptide letters >Scheelite weathering and tungsten (W) mobility in historical oxidic-sulfidic skarn tailings at Yxsjoberg, Sweden
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Scheelite weathering and tungsten (W) mobility in historical oxidic-sulfidic skarn tailings at Yxsjoberg, Sweden

机译:在yxsjoberg,瑞典yxsjoberg的历史氧化 - 磺化矽卡岩尾矿中的白钨矿风化和钨(w)流动性

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摘要

More knowledge of the geochemical behavior of tungsten (W) and associated contamination risks is needed. Therefore, weathering of scheelite (CaWO4) and secondary sequestration and transport of W to groundwater in historical skarn tailings and surface water downstream of the tailings were studied. The tailings contained 920 mg/kg W, primarily in scheelite. Mineralogical and geochemical analyses were combined to elucidate the geochemical behavior of W in the tailings, and water samples were taken monthly during 2018 to monitor its mobility. In the tailings, a large peak of W was found at 1.5 m depth. There, 30 wt%. of W was present in easily reducible phases, indicating former scheelite weathering. Currently, W is being released from scheelite to water-soluble phases at 2.5 m depth. The release of WO42- is hypothetically attributed to anion exchange with CO32- released from calcite neutralizing acid produced from pyrrhotite oxidation in the upper tailings and transported downwards to pH conditions > 7. Higher concentrations of dissolved W were found in the groundwater and particulate Win downstream surface water than in reference water, but they were lower than current contamination thresholds. Tungsten showed correlations with hydrous ferric oxides (HFO) in both the tailings and surface water.
机译:需要了解对钨(W)和相关污染风险的地球化学行为的了解。因此,研究了历史尾尾和尾矿下游下游的白钨矿(Cawo4)和二次隔离和运输W的静音和转运。尾矿主要含有920毫克/千克W,主要是在硅藻土。结合矿物学和地球化学分析以阐明尾矿中W的地球化学行为,并在2018年期间每月进行水样,以监测其流动性。在尾矿中,在1.5米深度下发现W的大峰值。那里,30%wt%。 W易于清除的阶段出现,表明前壳石风化。目前,W在2.5米深度下从单岩石释放到水溶性阶段。 WO42的释放被假设归因于由从尾矿中的焦油氧化氧化的方解石中和酸中与Co32-释放的阴离子交换,并向下运输至pH条件> 7.在地下水中发现较高浓度的溶解W和下游颗粒地表水比参照水,但它们低于电流污染阈值。钨罐显示尾矿和地表水中含水铁(HFO)的相关性。

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