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Remediation of chromium-contaminated soil by electrokinetics and electrokinetics coupled with CaAl-LDH permeable reaction barrier

机译:电动和电动滤过铬污染的土壤含铬污染的土壤 - LDH可渗透反应屏障

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The remediation of Cr(VI)-contaminated soil was investigated by electrokinetic (EK) and permeable-reactive-barrier assisted electrokinetic (EK-PRB). The medium of PRB was hydrocalumite (CaAl-LDH). The results showed that removal efficiency of hexavalent chromium (Cr(VI)) in EK-PRB and EK system was 96.49 and 85.50%, respectively. Simultaneously, the removal efficiency of total chromium (TCr) was 69.34 and 40.97% after 120-h treatment. The XRD, FTIR, and XPS analyses indicated that the reactive barrier media of CaAl-LDH successfully captured the chromium. Besides, the migration rate of chromium in EK-PRB was relatively faster than EK, since the media of PRB captured chromium in-time and reduced the influence of chromium accumulation on the migration of chromium. Moreover, the trivalent chromium (Cr(III)) was generated in EK/EK-PRB, and the chromium was stabilized in soil with the chemical speciations of oxidizable and residual fractions. Therefore, the treatment of EK-PRB and EK both increased the removal of chromium and decreased its environmental risks.
机译:通过电动(EK)和可渗透 - 反应性阻隔辅助电动(EK-PRB)研究Cr(VI) - 酰胺土壤的修复。 PRB的培养基是氢氧石油(CAAL-LDH)。结果表明,EK-PRB和EK系统中六价铬(Cr(VI))的去除效率分别为96.49和85.50%。同时,120-H处理后,总铬(TCR)的去除效率为69.34和40.97%。 XRD,FTIR和XPS分析表明CaAL-LDH的反应阻挡介质成功捕获了铬。此外,EK-PRB中铬的迁移率比EK相对较快,因为PRB捕获的铬的培养基及时降低了铬积累对铬迁移的影响。此外,在EK / EK-PRB中产生三价铬(Cr(III)),铬在土壤中稳定,具有可氧化和残留级分的化学凝固。因此,EK-PRB和EK的治疗均增加了铬的去除并降低了环境风险。

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