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Fe-Nanoporous Carbon Derived from MIL-53(Fe): A Heterogeneous Catalyst for Mineralization of Organic Pollutants

机译:源自MIL-53(Fe)的Fe-纳米多孔碳:一种用于有机污染物矿化的非均相催化剂

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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 ( [email?protected] ). 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.
机译:通过在多孔碳毡电极(CF)表面碳化MIL-53(Fe)制备催化电极,用于通过异质电Fenton(EF)工艺处理废水。当用硝酸预处理碳毡时,可获得最佳结果,从而增强了MIL-53(Fe)对表面的亲和力。经过一系列优化实验后,在800°C的条件下碳化5小时以形成Fe-纳米多孔碳([受电子邮件保护])。所制备的电极在EF工艺中既用作阴极催化剂,又用作非均相催化剂,用于示例性染料酸性橙7(AO7)的矿化。在中性pH值(6.5)左右电解8小时内,总有机碳(TOC)去除率为46.1%,并且在五个处理周期中,电极保留了其原始效率的80%以上。

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