Electro-peroxone degradation of metamitron using a gas diffusion cathode with ZIF-derived heteroatom-doped porous carbon as the catalytic layer

被引:4
作者
Chen, Lu [1 ]
Ding, Jingfeng [2 ]
Zhang, Peili [2 ]
Ru, Yifan [1 ]
Wei, Lanlan [1 ]
Dai, Qizhou [1 ]
机构
[1] Zhejiang Univ Technol, Coll Environm, Hangzhou 310032, Peoples R China
[2] Taizhou Environm Sci Design & Res Inst Co Ltd, Taizhou 318000, Peoples R China
关键词
Gas diffusion electrode; Nickel foam; Co N-FLC@CNT; Wastewater treatment; Hydrogen peroxide; REMOVAL; WATER;
D O I
10.1016/j.seppur.2024.126923
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Electro-peroxone (EP) is a new advanced oxidation water treatment technology that combines electrocatalysis and ozonation. The development and utilization of efficient composite cathode is a key factor for the improvement of oxygen reduction reaction (ORR) in EP process. Herein, a novel gas diffusion electrode (GDE) with the nickel foam (NF) as the substrate. The Co, N-FLC@CNT as the catalytic layer (Co, N-FLC@CNT/GDE) was fabricated by a coating method. Metamitron in the aquatic environment is capable of damaging non-target organs and poses a serious threat to human drinking water sources and health. The EP performance of Co, NFLC@CNT/GDE was analyzed using metamitron as a model pollutant. Metal catalysts divalent cobalt ions (Co2+) or divalent zinc ions (Zn2+) promote the production of H2O2. Under the optimal process conditions, the metamitron removal and COD removal reached 94.74 % and 62.22 %, respectively. Using Co, N/FLC@CNT/GDE that can effectively convert O2 to H2O2, the EP process degraded metamitron more effectively than conventional ozonation and electrolysis processes. The study proves that the Co, N/FLC@CNT/GDE has a broad prospect for use in EP.
引用
收藏
页数:17
相关论文
共 45 条
[1]   Progress in the biological and chemical treatment technologies for emerging contaminant removal from wastewater: A critical review [J].
Ahmed, Mohammad Boshir ;
Zhou, John L. ;
Huu Hao Ngo ;
Guo, Wenshan ;
Thomaidis, Nikolaos S. ;
Xu, Jiang .
JOURNAL OF HAZARDOUS MATERIALS, 2017, 323 :274-298
[2]   Recent advances in advanced oxidation processes (AOPs) for the treatment of nitro- and alkyl-phenolic compounds [J].
Arifin, M. N. ;
Jusoh, R. ;
Abdullah, H. ;
Ainirazali, N. ;
Setiabudi, H. D. .
ENVIRONMENTAL RESEARCH, 2023, 229
[3]   Electro-peroxone treatment of Orange II dye wastewater [J].
Bakheet, Belal ;
Yuan, Shi ;
Li, Zhaoxin ;
Wang, Huijiao ;
Zuo, Jiane ;
Komarneni, Sridhar ;
Wang, Yujue .
WATER RESEARCH, 2013, 47 (16) :6234-6243
[4]   Electro-peroxone enables efficient Cr removal and recovery from Cr(III) complexes and inhibits intermediate Cr(VI) generation in wastewater: Performance and mechanism [J].
Chen, Cong ;
Liu, Pengfei ;
Li, Yubao ;
Tian, Hailong ;
Zhang, Yanyang ;
Zheng, Xiangyong ;
Liu, Renlan ;
Zhao, Min ;
Huang, Xianfeng .
WATER RESEARCH, 2022, 218
[5]   A mini-review of the electro-peroxone technology for wastewaters: Characteristics, mechanism and prospect [J].
Chen, Lu ;
Wei, Lanlan ;
Ru, Yifan ;
Weng, Mili ;
Wang, Lin ;
Dai, Qizhou .
CHINESE CHEMICAL LETTERS, 2023, 34 (09)
[6]   Incineration of the antibiotic chloramphenicol by electro-peroxone using a smart electrolyzer that produces H2O2 through electrolytic O2 [J].
Cornejo, Oscar M. ;
Nava, Jose L. .
SEPARATION AND PURIFICATION TECHNOLOGY, 2022, 282
[7]   Treatment of synthetic textile wastewater containing Acid Red 182 by electro-Peroxone process using RSM [J].
Fard, Mahdi Sanavi ;
Ehsani, Ali ;
Soleimani, Fariba .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2023, 344
[8]   Electrochemical oxidation of a typical PPCP wastewater with a novel high-efficiency PbO2 anode based on NCNSs and Ce co-modification: Parameter optimization and degradation mechanism [J].
Feng, Jieqi ;
Lan, Hao ;
Tao, Qibin ;
Chen, Wenqing ;
Dai, Qizhou .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2022, 916
[9]   Electrochemical oxidation of sulfamethoxazole by nitrogen-doped carbon nanosheets composite PbO2 electrode: Kinetics and mechanism [J].
Feng, Jieqi ;
Tao, Qibin ;
Lan, Hao ;
Xia, Yi ;
Dai, Qizhou .
CHEMOSPHERE, 2022, 286
[10]   The •OH Radical Yield in the H2O2 + O3 (Peroxone) Reaction [J].
Fischbacher, Alexandra ;
von Sonntag, Justus ;
von Sonntag, Clemens ;
Schmidt, Torsten C. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2013, 47 (17) :9959-9964