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To efficiently treat antibiotic wastewater, we prepared Fe_xMn7-x-MOFs@GF cathode through modification of graphite felt(GF),established a heterogeneous electro-Fenton system, and systematically investigated its degradation performance and mechanism for Enrofloxacin(ENR).The results show that, when the calcination temperature is 600 ℃ and the molar ratio of Fe to Mn is 4∶3,the degradation performance of Fe_4Mn3-MOFs@GF cathode for ENR is the best.Under the conditions of the initial pH value of 5.0, the current density of 15.24 mA·cm-2,and the aeration rate of 2.0 L·min-1,the removal rate of ENR reaches 97.89% at 120 min.After 6 cycles, the removal rate of ENR by Fe_4Mn3-MOFs@GF cathode only decreases by 7.16%,achieving the stable degradation of ENR.
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Basic Information:
China Classification Code:O646;X703
Citation Information:
[1]DENG Qiang,LIU Shanshan,WANG Xiaoyuan ,et al.Construction of A Heterogeneous Electro-Fenton System Using FeMn-MOFs@GF Cathode for Degradation of Enrofloxacin[J].Chemistry & Bioengineering,2026,43(08):26-31.
Fund Information:
国家自然科学基金项目(21173026); 湖北省自然科学基金重点项目(2013CFA107); 荆州市科技项目(2019EC61-14)
2026-05-28
2026-05-28
2026-05-28