State Key Laboratory of Pollution Control and Resources Reuse, School of Environmental Science and Engineering, Tongji University , Shanghai 200092, China.
School of Civil and Environmental Engineering, University of New South Wales , Sydney, New South Wales 2052, Australia.
Environ Sci Technol. 2017 Mar 7;51(5):2757-2765. doi: 10.1021/acs.est.6b05625. Epub 2017 Feb 15.
Removal of recalcitrant anthropogenic contaminants from water calls for the development of cost-effective treatment technologies. In this work, a novel electrochemical membrane filtration (EMF) process using a conducting microfiltration membrane as the cathode has been developed and the degradation of sulphanilic acid (SA) examined. The electrochemical degradation of SA in flow-by mode followed pseudo-first-order kinetics with the degradation rate enhanced with increase in charging voltage. Hydrogen peroxide as well as oxidants such as HO and Fe(IV)O were generated electrochemically with HO found to be the dominant oxidant responsible for SA degradation. In addition to the anodic splitting of water, HO was formed via a heterogeneous Fenton process with surface-bound Fe(II) resulting from aerobic corrosion of the steel mesh. In flow-through mode, the removal rate of SA was 13.0% greater than obtained in flow-by mode, presumably due to the better contact of the contaminant with the oxidants generated in the vicinity of the membrane surface. A variety of oxidized products including hydroquinone, p-benzoquinone, oxamic acid, maleic acid, fumaric acid, acetic acid, formic acid, and oxalic acid were identified and an electrochemical degradation pathway proposed. These findings highlight the potential of the cathodic EMF process as an effective technology for water purification.
从水中去除顽固的人为污染物需要开发具有成本效益的处理技术。在这项工作中,开发了一种新型的电化学膜过滤(EMF)工艺,使用导电微滤膜作为阴极,并研究了对磺胺酸(SA)的降解。在流动模式下,SA 的电化学降解遵循准一级动力学,随着充电电压的增加,降解速率加快。过氧化氢以及 HO 和 Fe(IV)O 等氧化剂在电化学条件下生成,HO 被发现是导致 SA 降解的主要氧化剂。除了水的阳极分解外,HO 还通过表面结合的 Fe(II)形成多相芬顿过程,这是由钢网的有氧腐蚀产生的。在流通模式下,SA 的去除率比在流动模式下提高了 13.0%,这可能是由于污染物与在膜表面附近生成的氧化剂更好地接触所致。鉴定出多种氧化产物,包括对苯二酚、对苯醌、氨甲酰酸、马来酸、富马酸、乙酸、甲酸和草酸,并提出了一种电化学降解途径。这些发现强调了阴极 EMF 工艺作为水净化的有效技术的潜力。