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Electrosorption for organic pollutants removal and desalination by graphite and activated carbon fiber composite electrodes

机译:石墨和活性炭纤维复合电极对有机污染物的电吸附去除和脱盐

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摘要

This paper investigates a new type of carbon-based electrodes, which were equipped with graphite and activated carbon fiber composite, to improve the performance of electrosorption. The results indicated that the highest desalination efficiency achieved 55 % and the optimal condition was 1.6 V voltage, 60 min retention time and 1.0 cm electrode distance. Freundlich isotherms successfully fitted with the respective behavior of the composite electrode and provided theoretical evidence for the desalination performance improvement. Applied in real black liquor of refined cotton, the graphite and activated carbon fiber composite electrodes achieved high removal efficiency for conductivity (59 %) and CODCr (76 %). Similar removal performance was also observed in sodium copper chlorophyll wastewater, and removal efficiency was 37 % for conductivity and 14 % for CODCr. For the first time, this research demonstrated the biodegradability improvement in real industrial wastewater via electrosorption treatment, suggesting a potential pretreatment technique for high-salinity wastewater.
机译:本文研究了一种新型的碳基电极,该电极配有石墨和活性碳纤维复合材料,以提高电吸附性能。结果表明,最高脱盐效率达到了55%,最佳条件是1.6 V电压,60分钟保留时间和1.0 cm电极距离。 Freundlich等温线成功地适应了复合电极的各自行为,并为提高脱盐性能提供了理论依据。石墨和活性碳纤维复合电极应用于精制棉的真实黑液中,对电导率(59%)和CODCr(76%)的去除效率很高。在叶绿素铜钠铜废水中也观察到了相似的去除性能,电导率去除效率为37%,CODCr去除效率为14%。这项研究首次证明了通过电吸附处理可改善实际工业废水中的生物降解性,为高盐度废水提出了一种潜在的预处理技术。

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