Le Thi Xuan Huong, Cowan Matthew G, Drobek Martin, Bechelany Mikhael, Julbe Anne, Cretin Marc
Institut Européen des Membranes, IEM UMR-5635 CNRS, ENSCM, University Montpellier, Place Eugène Bataillon, 34095 Montpellier CEDEX 5, France.
Department of General Science, Van Lang University, 45 Nguyen Khac Nhu, District 1, Ho Chi Minh City 710200, Vietnam.
Nanomaterials (Basel). 2019 Apr 19;9(4):641. doi: 10.3390/nano9040641.
Catalytic electrodes were prepared via carbonization of MIL-53(Fe) on the surface of porous carbon felt electrodes (CF) for use in wastewater treatment by the heterogeneous electro-Fenton (EF) process. The best results were obtained when the carbon felt was pretreated with nitric acid, enhancing the affinity of the MIL-53(Fe) for the surface. Following a series of optimization experiments, carbonization conditions of 800 °C for 5 h were used to form Fe-nanoporous carbon (MOFs@CF). The as-prepared electrodes were used as both cathode and heterogeneous catalyst in the EF process for the mineralization of exemplar dye Acid Orange 7 (AO7). Total organic carbon (TOC) removal of 46.1% was obtained within 8 h of electrolysis at around neutral pH (6.5) and the electrode retained over 80% of its original efficiency over five treatment cycles.
通过在多孔碳毡电极(CF)表面碳化MIL-53(Fe)制备催化电极,用于非均相电芬顿(EF)工艺处理废水。当碳毡用硝酸预处理时可获得最佳结果,增强了MIL-53(Fe)对表面的亲和力。经过一系列优化实验,采用800℃碳化5小时的条件形成铁纳米多孔碳(MOFs@CF)。所制备的电极在EF工艺中用作阴极和非均相催化剂,用于典型染料酸性橙7(AO7)的矿化。在接近中性pH(6.5)的条件下电解8小时,总有机碳(TOC)去除率达到46.1%,并且该电极在五个处理循环后仍保留其原始效率的80%以上。