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水污染过程与防治研究中心

水污染过程与防治研究中心

Research Center for Process and Prevention of Water Pollution

EN

论文专利 研究论文
79.
Chuan Wang; Sha Wang; Cheng Song; Hong Liu; Jingxin Yang*; Improved Electron Efficiency of Zero-Valent Iron towards Cr(VI) Reduction after Sequestering in Al2O3 Microspheres, International Journal of Environmental Research and Public Health, 2022, 19: 8367.
80.
Chuan Wang; Zhifen Cao; Hongtao Huang; Hong Liu; Sha Wang*; Electrocatalytic reduction of nitrate via Co3O4/Ti cathode prepared by electrodeposition paired with IrO2-RuO2 anode, Frontiers in Chemistry, 2022, 10: 900962.
81.
Jingxin Yang; Yujie Luo; Xianghui Fu; Zijun Dong*; Chuan Wang; Hong Liu; Chengchun Jiang; Unexpected degradation and deiodination of diatrizoate by the Cu(II)/S(IV) system under anaerobic conditions, Water Research, 2021, 198: 117137.
82.
Liuyang Wan; Hong Liu; Xingzu Wang*; Anaerobic ammonium oxidation coupled to Fe(III) reduction: Discovery, mechanism and application prospects in wastewater treatment, Science of the Total Environment, 2022, 818: 151687.
83.
Jia Li; Lei Zheng; Changbing Ye; ZhimingZhou; Baosen Ni; Xiaomei Zhang; Hong Liu*; Unveiling organic loading shock-resistant mechanism in a pilot-scale moving bed biofilm reactor-assisted dual-anaerobic-anoxic/oxic system for effective municipal wastewater treatment, Bioresource Technology, 2022, 347: 126339.
84.
Ling Fang; Sha Wang; Cheng Song; Xiaohui Yang; Yuke Li; Hong Liu*; Enhanced nitrate reduction reaction via efficient intermediate nitrite conversion on tunable CuxNiy/NC electrocatalysts, Journal of Hazardous Materials, 2022, 421: 126628.
85.
Fengjun Yin; Ling Fang; Hong Liu; pH Overpotential for unveiling the pH gradient effect of H+/OH− transport in electrode reaction kinetics, CCS Chemistry, 2021, 3: 892-903.
86.
Jia Li; Lei Zheng; Changbing Ye; Baosen Ni; Xingzhu Wang; Hong Liu*; Evaluation of an intermittent-aeration constructed wetland for removing residual organics and nutrients from secondary effluent: Performance and microbial analysis, Bioresource Technology, 2021, 329: 124897.
87.
Yuan Liu*; Yingying Deng; Qi Zhang; Hong Liu; Overview of recent developments of resource recovery from wastewater via electrochemistry-based technologies, Science of the Total Environment, 2021, 757: 143901.
88.
Fei Guo; Yuan Liu; Hong Liu*; Hibernations of electroactive bacteria provide insights into the flexible and robust BOD detection using microbial fuel cell-based biosensors, Science of the Total Environment, 2021, 753: 142244.
89.
Fei Guo; Huiqin Luo; Zongyang Shi; Yan Wu; Hong Liu*; Substrate salinity: A critical factor regulating the performance of microbial fuel cells, a review, Science of the Total Environment, 2021, 763:143021.
90.
Yangyang Gao; Sha Wang; Fengjun Yin; Pin Hu; Xingzu Wang; Yuan Liu*; Hong Liu; Enhancing sensitivity of microbial fuel cell sensors for low concentration biodegradable organic matter detection: Regulation of substrate concentration, anode area and external resistance, Journal of Environmental Science, 2021, 101: 227-235.
91.
Nuan Yang; Hong Liu*; Guoqiang Zhan*; Daping Li; Sustainable ammonia-contaminated wastewater treatment in heterotrophic nitrifying/denitrifying microbial fuel cell, Journal of Cleaner Production, 2020, 245: 118923.
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