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Peroxydisulfate activation by positively polarized carbocatalyst for enhanced removal of aqueous organic pollutants

机译:正极化碳催化剂活化过氧二硫酸盐以增强对水性有机污染物的去除

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Multi-walled carbon nanotubes (MWCNTs)/peroxydisulfate (PDS) is a green oxidative system for abatement of aqueous organic pollutants, while the powder form and poor cycling performance of the catalyst limit its practical application. To solve these problems, fabricating a MWCNT cathode (negative polarization) to coupling carbocatalysis-driven PDS activation with electrosorption of organic pollutant was previously demonstrated to be a possible solution to these problems. To further improve the activation efficiency of PDS, positive polarization of MWCNT electrode (anode) was adapted to activate PDS for removing acyclovir and phenol in this work. Under a working voltage of 1.2 V, the MWCNT anode was more efficient than the MWCNT cathode and the non-polarized MWCNT electrode for PDS activation and removal of organic pollutants, owing to the enhanced attraction between S2O82- anions and anode. Although the positiveegative polarization of MWCNT electrode doesn't alter the nonradical mechanism involved in MWCNTs/PDS system, theoretical calculations suggest that different polarization affect the electron configuration and oxidative capacity of activated S2O82- bounded to MWCNTs differently, and that the adsorbed S2O82- with stretched S-O bond and much higher oxidative capacity than that in the case of non-polarized MWCNT electrode is responsible for the MWCNTs anode, while adsorbed S2O82- with stretched O-O bond and slightly higher oxidative capacity is responsible for the MWCNTs cathode. Finally, implications of operation parameters including electrode potential, energy cost, pH, etc. on the elimination efficiency by MWCNT anode/PDS system were investigated and the results suggest that the MWCNT anode/PDS is an efficient and economical metal-free electrochemical oxidative system for organic contaminants remediation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:多壁碳纳米管(MWCNTs)/过二硫酸盐(PDS)是一种绿色氧化系统,用于减少水性有机污染物,而催化剂的粉末形式和较差的循环性能限制了其实际应用。为了解决这些问题,先前已证明制造MWCNT阴极(负极化)以将碳催化驱动的PDS活化与有机污染物的电吸附耦合在一起是解决这些问题的可能方法。为了进一步提高PDS的激活效率,在这项工作中,采用了MWCNT电极(阳极)的正极性来激活PDS,以去除阿昔洛韦和苯酚。在1.2 V的工作电压下,由于S2O82-阴离子与阳极之间的吸引力增强,因此MWCNT阳极比MWCNT阴极和非极化MWCNT电极对PDS活化和去除有机污染物的效率更高。尽管MWCNT电极的正/负极化不会改变MWCNTs / PDS系统所涉及的非自由基机理,但理论计算表明,不同的极化方式对结合到MWCNTs上的活化S2O82-的电子构型和氧化能力有不同的影响,并且吸附的S2O82 -具有伸展的SO键和比非极化MWCNT电极高得多的氧化能力是MWCNTs阳极的原因,而吸附的S2O82-具有伸展的OO键和稍高的氧化能力是MWCNTs阴极的原因。最后,研究了电极电位,能量成本,pH等操作参数对MWCNT阳极/ PDS系统消除效率的影响,结果表明,MWCNT阳极/ PDS是一种高效,经济的无金属电化学氧化系统。用于有机污染物的修复。 (C)2019 Elsevier Ltd.保留所有权利。

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