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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Biotite dissolution and Cr(VI) reduction at elevated pH and ionic strength
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Biotite dissolution and Cr(VI) reduction at elevated pH and ionic strength

机译:在升高的pH和离子强度下黑云母溶解和Cr(VI)还原

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摘要

The effects of elevated pH, ionic strength, and temperature on sediments in the vadose zone are of primary importance in modeling contaminant transport and understanding the environmental impact of tank leakage at nuclear waste storage facilities like those of the Hanford site. This study was designed to investigate biotite dissolution under simulated high level waste (HLW) conditions and its impact on Cr(VI) reduction and immobilization. Biotite dissolution increased with NaOH concentrations in the range of 0.1 to 2 mol L-1. There was a corresponding release of K, Fe, Si, and Al to solution, with Si and Al showing a complex pattern due to the formation of secondary zeolite minerals. Dissolved Fe concentrations were an order of magnitude lower than the other elements, possibly due to the formation of green rust and Fe(OH)(2). The reduction of Cr(VI) to Cr(III) also increased with increased NaOH concentration. A homogeneous reduction of chromate by Fe(II)(aq) released through biotite dissolution was probably the primary pathway responsible for this reaction. Greater ionic strengths increased biotite dissolution and consequently increased Fe(II)(aq) release and Cr(VI) removal. The results indicated that HLW would cause phyllosilicate dissolution and the formation of secondary precipitates that would have a major impact on radionuclide and contaminant transport in the vadose zone at the Hanford site. Copyright (c) 2005 Elsevier Ltd.
机译:pH值,离子强度和温度升高对渗流区内沉积物的影响对于模拟污染物迁移和理解核废料储存设施(如汉福德基地)的储罐泄漏对环境的影响至关重要。这项研究旨在调查在模拟高放废物(HLW)条件下黑云母的溶解及其对Cr(VI)还原和固定的影响。在NaOH浓度在0.1至2 mol L-1范围内,黑云母溶解度增加。相应地有K,Fe,Si和Al释放到溶液中,由于形成了次级沸石矿物,Si和Al显示出复杂的图案。溶解的铁浓度比其他元素低一个数量级,这可能是由于生铁锈和Fe(OH)(2)的形成。 Cr(VI)还原为Cr(III)也随着NaOH浓度的增加而增加。通过黑云母溶解释放的Fe(II)(aq)均匀还原铬酸盐可能是造成此反应的主要途径。更高的离子强度增加了黑云母的溶解度,因此增加了Fe(II)(aq)的释放和Cr(VI)的去除。结果表明,高放废物将导致层状硅酸盐溶解并形成二次沉淀,这将对汉福德遗址渗流区的放射性核素和污染物迁移产生重大影响。版权所有(c)2005 Elsevier Ltd.

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