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Remediation of Dye-Polluted Kaolinite by Combination of Electrokinetic Remediation and Electrochemical Treatment

机译:电动修复与电化学处理相结合修复染料污染的高岭石

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This work studies the removal of organic pollutants from soil applying a combination of the electrokinetic remediation and the electrochemical decolorization. Model samples with kaolinite clay polluted with the dye Lissamine Green B (LGB) were used to evaluate the capability of the electrokinetic remediation in the treatment and removal of organics from soils. Unenhanced electrokinetic treatment did not result in any significant removal of LGB from the kaolinite sample. However, the use of Na2HPO4 in the processing fluid increased the electro-osmotic flux, improved the desorption of dye from the surface of kaolinite particles, and prevented the acidification of the medium. After 2 days, 94% of the dye was transported toward the cathode chamber where it was accumulated. Use of Na2SO4 in the processing fluid also improved the results compared to the unenhanced experiment but the removal of dye only reached 75% due to the lower electro-osmotic flux registered in this experiment. Once the dye was removed from kaolinite clay sample, the dye Lissamine Green B can be decolorized using electrochemical treatment. The effect of Na2HPO4, in the collected liquid, and dye concentration were studied. Na2HPO4 clearly improves the decolorization rate reaching high decolorization in a short treatment time.
机译:这项工作研究了电动修复和电化学脱色的结合从土壤中去除有机污染物。使用高岭石粘土模型样品,用Lissamine Green B(LGB)污染的样品来评估电动修复在处理和去除土壤中有机物方面的能力。未经增强的电动处理不会从高岭石样品中显着除去LGB。但是,在处理液中使用Na2HPO4可以增加电渗通量,改善染料从高岭石颗粒表面的脱附,并防止介质酸化。 2天后,94%的染料被转移到阴极室,在此积聚。与未经增强的实验相比,在处理液中使用Na2SO4也可以改善结果,但是由于在该实验中记录到的较低的电渗透通量,因此染料的去除率仅达到75%。从高岭石粘土样品中去除染料后,可以使用电化学处理使染料Lissamine Green B脱色。研究了Na2HPO4在收集的液体中的作用和染料浓度。 Na 2 HPO 4明显提高了脱色率,在较短的处理时间内达到了很高的脱色率。

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