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首页> 外文期刊>Chemical engineering journal >Comparison of approaching and fixed anodes for avoiding the 'focusing' effect during electrokinetic remediation of chromium-contaminated soil
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Comparison of approaching and fixed anodes for avoiding the 'focusing' effect during electrokinetic remediation of chromium-contaminated soil

机译:比较接近和固定阳极避免电动修复铬污染土壤时的“聚焦”效应

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Approaching anode is used to decrease the 'focusing' effect during electrokinetic (EK) remediation of chromium-contaminated soils from a chromite ore processing residue (COPR) deposition site. Four EK remediation experiments were performed to compare the effect of approaching and fixed anodes. Various parameters, including current, pH, removal of chromium (Cr) and variation of Cr chemical fractionation were used to evaluate the process. Results show that approaching anode EK remediation (AA-EK) enhanced the current and decreased the pH of the soil. It improved not only the removal of Cr(VI) (92.50%) but also Cr(total) (35.96%). Citric acid as the catholyte was more suitable for reducing the 'focusing' effect and enhancing removal rate of Cr(total). After remediation, the four fractions of Cr(total) achieved broader distribution changes. AA-EK decreased the content of BCR2, BCR3 and BCR4 near the cathode. However, it increased the ratio of BCR1 in the sections near the anode, especially with citric acid as the electrolytes. The results indicate that the approaching anode method in the presence of citric acid is an advisable choice for remediation of chromium-contaminated soil.
机译:接近阳极用于减少从铬铁矿矿石加工残留物(COPR)沉积现场对铬污染的土壤进行电动(EK)修复期间的“聚焦”效应。进行了四个EK修复实验,以比较接近和固定阳极的效果。各种参数,包括电流,pH值,铬(Cr)的去除和Cr化学分馏的变化都用于评估该过程。结果表明,接近阳极EK修复(AA-EK)会增加电流并降低土壤的pH值。它不仅提高了Cr(VI)的去除率(92.50%),而且还提高了Cr(总)的去除率(35.96%)。柠檬酸作为阴极电解液更适合降低“聚焦”效应并提高Cr(总)的去除率。修复后,四部分Cr(总计)实现了更广泛的分布变化。 AA-EK降低了阴极附近BCR2,BCR3和BCR4的含量。但是,它增加了阳极附近部分中BCR1的比例,尤其是柠檬酸作为电解质。结果表明,在柠檬酸存在下接近阳极法是修复铬污染土壤的明智选择。

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