三价铬在富锰黏土中的氧化和迁移特性

S. Chinthamreddy, K. Reddy
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引用次数: 38

摘要

本文介绍了一项研究的结果,评估了富锰粘土中Cr(III)氧化的程度和对电动补救效率的影响。由于铬通常与镍和镉一起存在于污染场地,因此研究了铬氧化还原化学变化对共存的镍和镉迁移的影响。实验用两种不同的黏土进行了电动实验:高岭土是一种典型的低缓冲土,冰土是一种高缓冲土。试验用1000毫克/千克铬(III)、500毫克/千克镍(II)和250毫克/千克镉(II)进行,有和没有1000毫克/千克锰。所有实验均在1.0 VDC/ cm的恒定电压梯度下进行。实验结果表明,在有锰存在的情况下,高岭土中Cr(III)氧化成Cr(VI)的比例为67%,在冰川至施加感应电位之前,Cr(III)氧化成Cr(VI)的比例为28%。
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Oxidation and Mobility of Trivalent Chromium in Manganese-Enriched Clays during Electrokinetic Remediation
This article presents the results of an investigation that assessed the extent and effect of oxidation of Cr(III) in manganese-enriched clays on the electrokinetic remedial efficiency. Because chromium commonly exists along with nickel and cadmium at contaminated sites, the effects of changes in chromium redox chemistry on the migration of the coexisting nickel and cadmium was also studied. Bench-scale electrokinetic experiments were conducted using two different clays: kaolin, a typical low buffering soil, and glacial till, a high buffering soil. Tests were performed with 1000 mg/kg of Cr(III), 500 mg/kg of Ni(II), and 250 mg/kg of Cd(II), both with and without the presence of 1000 mg/kg of manganese. All of these experiments were conducted under a constant voltage gradient of 1.0 VDC/ cm. The experimental results showed that in the presence of manganese, percentages of oxidation of Cr(III) into Cr(VI) ranged from 67% in kaolin to 28% in glacial till even before the application of induced electric potent...
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