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Efficient conversion of dimethylarsinate into arsenic and its simultaneous adsorption removal over FeCx/N-doped carbon fiber composite in an electro-Fenton process

机译:在电子芬顿工艺中将砷酸二甲酯有效转化为砷,并同时在FeCx / N掺杂的碳纤维复合材料上去除吸附

摘要

In this study, a FeCx/N-doped carbon fiber composite (FeCx/NCNFs) was developed via an electrospinning method. According to the characterization results of XRD, TEM and XPS, FeCx. (a mixture of Fe7C3 and Fe3C) was either embedded in or attached to the NCNFs. It was used for the first time as a catalyst for dimethylarsinate (DMA) degradation and as an absorbent for inorganic arsenic (As (V)), with degradation and adsorption occurring simultaneously, in an electro-Fenton process. The effects of catalyst dosage, initial DMA concentration, solution pH, and applied current on the treatment efficiency and the corresponding H2O2 generation were systematically investigated. The results showed that DMA could be efficiently oxidized into As(V). 96% of DMA was degraded after reaction time of 360 min and the residual As(V) concentration in solution was below the allowable limit of 0.01 mg/L under the optimum treatment conditions. Based on an ESR and radical scavenger experiment, .OH was proven to be the sole reactive oxygen species involved in the degradation process of DMA. DMA was oxidized to MMA as the primary oxidation product, which was subsequently oxidized to inorganic arsenic, As (V). TOC was also efficiently removed at the same time. The DMA removal mechanism for simultaneous degradation of dimethylarsinate and adsorption of arsenic over FeCx/NCNFs in the electro-Fenton process was also proposed based on the experimental results. (C) 2016 Published by Elsevier Ltd.
机译:在这项研究中,FeCx / N掺杂碳纤维复合材料(FeCx / NCNFs)是通过电纺丝方法开发的。根据XRD,TEM和XPS的表征结果,得出FeCx。 (Fe7C3和Fe3C的混合物)嵌入或附着在NC​​NF中。在电子芬顿工艺中,它首次用作砷酸二甲酯(DMA)降解的催化剂和无机砷(As(V))的吸收剂,同时降解和吸附同时发生。系统地研究了催化剂用量,初始DMA浓度,溶液pH和施加电流对处理效率和相应H2O2产生的影响。结果表明,DMA可以有效地氧化为As(V)。在360分钟的反应时间后,降解了96%的DMA,并且在最佳处理条件下,溶液中的残留As(V)浓度低于0.01 mg / L的允许极限。基于ESR和自由基清除剂实验,.OH被证明是DMA降解过程中唯一的活性氧。 DMA被氧化为MMA作为主要的氧化产物,随后被氧化为无机砷As(V)。同时也有效地去除了TOC。根据实验结果,提出了同时去除二甲基砷酸酯和FeCx / NCNFs吸附砷的DMA去除机理。 (C)2016由Elsevier Ltd.出版

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