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一种结合pH调节电解池用于对硝基苯酚降解的环保型铁阴极电芬顿系统。

An Eco-friendly Iron Cathode Electro-Fenton System Coupled With a pH-Regulation Electrolysis Cell for p-nitrophenol Degradation.

作者信息

Wang Xiaohui, Zhao Jingang, Song Chunyan, Shi Xian, Du Haipeng

机构信息

Technical Test Center of Sinopec Shengli OilField, Dongying, China.

Shengli Oilfield Testing and Evaluation Research Co., Ltd., SINOPEC, Dongying, China.

出版信息

Front Chem. 2022 Jan 28;9:837761. doi: 10.3389/fchem.2021.837761. eCollection 2021.

Abstract

The high consumption of salt reagents and strict pH control are still bottlenecks for the full-scale application of the Fenton reaction. In this work, a novel eco-friendly iron cathode electrochemical Fenton (ICEF) system coupled with a pH-regulation divided electrolysis cell was developed. In a pH-regulation divided electrolysis system, the desired pH for an effective Fenton reaction and for a neutral treated media could be obtained by HO splitting into H and OH at the anode and cathode, respectively. In an ICEF system, an iron plate was used as the cathode to inhibit the release of iron ions and promote the reduction of Fe to Fe. It was found that when a potential of 1.2 V/SCE was applied on the iron cathode, 98% of p-nitrophenol was removed in the combined system after 30 min with continuously adding 200 mg/L of HO. Meanwhile, a COD and TOC removal efficiency of 79 and 60% was obtained, respectively. In this case, the conductivity just slightly increased from 4.35 to 4.37 mS/cm, minimizing the increase of water salinity, as compared with the conventional Fenton process. Generally, this combined system was eco-friendly, energy-efficient, and has the potential of being a promising technology for the removal of bio-refractory organic pollutants from wastewaters.

摘要

高盐试剂消耗和严格的pH控制仍然是芬顿反应大规模应用的瓶颈。在本研究中,开发了一种新型的生态友好型铁阴极电化学芬顿(ICEF)系统,该系统与一个pH调节分隔电解槽相结合。在pH调节分隔电解系统中,通过在阳极和阴极分别将水分解为H和OH,可以获得有效芬顿反应所需的pH以及中性处理介质的pH。在ICEF系统中,使用铁板作为阴极来抑制铁离子的释放,并促进Fe还原为Fe。研究发现,当在铁阴极上施加1.2 V/SCE的电位时,在连续添加200 mg/L的过氧化氢的情况下,组合系统在30分钟后去除了98%的对硝基苯酚。同时,COD和TOC的去除效率分别达到了79%和60%。在这种情况下,与传统芬顿工艺相比,电导率仅从4.35略微增加到4.37 mS/cm,最大限度地减少了水盐度的增加。总体而言,这种组合系统生态友好、节能,具有成为从废水中去除生物难降解有机污染物的有前景技术的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/570e/8833155/59531c0d62b2/fchem-09-837761-g001.jpg

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