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Sulfur bacteria-reinforced microbial electrochemical denitrification Journal article
Sen Lin, Wentao Tang, Yihang Xiao, Feixiang Zan, Xiaoming Liu, Guanghao Chen, Tianwei Hao. Sulfur bacteria-reinforced microbial electrochemical denitrification[J]. Bioresource Technology, 2024, 393, 130121.
Authors:  Sen Lin;  Wentao Tang;  Yihang Xiao;  Feixiang Zan;  Xiaoming Liu; et al.
Favorite | TC[WOS]:1 TC[Scopus]:1  IF:9.7/9.4 | Submit date:2024/02/16
Microbial Electrochemical Denitrification  Sulfur Bacteria  Biological Nitrogen Removal  Bio-electrochemical Wastewater Treatment  
In situ coagulation-electrochemical oxidation of leachate concentrate: A key role of cathodes Journal article
Li,Huankai, Zeng,Qian, Zan,Feixiang, Lin,Sen, Hao,Tianwei. In situ coagulation-electrochemical oxidation of leachate concentrate: A key role of cathodes[J]. Environmental Science and Ecotechnology, 2023, 16, 100267.
Authors:  Li,Huankai;  Zeng,Qian;  Zan,Feixiang;  Lin,Sen;  Hao,Tianwei
Favorite | TC[WOS]:5 TC[Scopus]:4  IF:14.0/13.2 | Submit date:2023/08/03
Cathode Material  Electrochemical Process  In Situ Coagulation Treatment  Leachate Concentrate  Removal Mechanism  
Achieving superior nitrogen removal in an air-lifting internal circulating reactor for municipal wastewater treatment: Performance, kinetic analysis, and microbial pathways Journal article
Yi Han, Xiejuan Lu, Yang Liu, Yangfan Deng, Feixiang Zan, Juan Mao, Tianwei Hao, Cheng Cao, Xiaohui Wu. Achieving superior nitrogen removal in an air-lifting internal circulating reactor for municipal wastewater treatment: Performance, kinetic analysis, and microbial pathways[J]. BIORESOURCE TECHNOLOGY, 2023, 371, 128599.
Authors:  Yi Han;  Xiejuan Lu;  Yang Liu;  Yangfan Deng;  Feixiang Zan; et al.
Favorite | TC[WOS]:11 TC[Scopus]:14  IF:9.7/9.4 | Submit date:2023/04/03
Internal Circulating Reactor  Microbial Community  Nitrogen Removal  Simultaneous Nitrification And deNitrification (Snd)  
Optimizing waste activated sludge disintegration by investigating multiple electrochemical pretreatment conditions: Performance, mechanism and modeling Journal article
Qingshan Lin, Xinlei Dong, Shihao Xi, Boyi Cheng, Feixiang Zan, Jie Ma, Xiaoming Liu, Tianwei Hao, Gang Guo. Optimizing waste activated sludge disintegration by investigating multiple electrochemical pretreatment conditions: Performance, mechanism and modeling[J]. Science of the Total Environment, 2023, 870, 162025.
Authors:  Qingshan Lin;  Xinlei Dong;  Shihao Xi;  Boyi Cheng;  Feixiang Zan; et al.
Favorite | TC[WOS]:5 TC[Scopus]:6  IF:8.2/8.6 | Submit date:2023/02/28
Cost-effectiveness  Electrochemical Pretreatment  Reactive Chlorine Species  Waste Activated Sludge Disintegration  
The effects of sulfite pretreatment on the biodegradability and solubilization of primary sludge: Biochemical methane potential, kinetics, and potential implications Journal article
Hao, Tianwei, Liu, Zheng, Liang, Muxiang, Liu, Xiaoming, Chen, Jing, Wu, Xiaohui, Varjani, Sunita, Zan, Feixiang. The effects of sulfite pretreatment on the biodegradability and solubilization of primary sludge: Biochemical methane potential, kinetics, and potential implications[J]. Separation and Purification Technology, 2022, 297, 121439.
Authors:  Hao, Tianwei;  Liu, Zheng;  Liang, Muxiang;  Liu, Xiaoming;  Chen, Jing; et al.
Favorite | TC[WOS]:10 TC[Scopus]:12  IF:8.1/7.6 | Submit date:2022/08/02
Anaerobic Digestion  Biodegradability  Methane Production  Primary Sludge  Sulfite  
Advances in elemental sulfur-driven bioprocesses for wastewater treatment: From metabolic study to application Journal article
Guo, Gang, Li, Zhaoling, Chen, Lei, Ling, Qingshan, Zan, Feixiang, Isawi, Heba, Hao, Tianwei, Ma, Jie, Wang, Zongping, Chen, Guanghao, Lu, Hui. Advances in elemental sulfur-driven bioprocesses for wastewater treatment: From metabolic study to application[J]. Water Research, 2022, 213, 118143.
Authors:  Guo, Gang;  Li, Zhaoling;  Chen, Lei;  Ling, Qingshan;  Zan, Feixiang; et al.
Favorite | TC[WOS]:60 TC[Scopus]:67  IF:11.4/12.2 | Submit date:2022/05/04
Biological Wastewater Treatment  Elemental Sulfur  Sulfur-driven Autotrophic Denitrification  Sulfur-reducing Organics Removal  
Alleviating nutrient imbalance of low carbon-to-nitrogen ratio food waste in anaerobic digestion by controlling the inoculum-to-substrate ratio Journal article
Xiao, Yihang, Zan, Feixiang, Zhang, Weilan, Hao, Tianwei. Alleviating nutrient imbalance of low carbon-to-nitrogen ratio food waste in anaerobic digestion by controlling the inoculum-to-substrate ratio[J]. BIORESOURCE TECHNOLOGY, 2022, 346, 126342.
Authors:  Xiao, Yihang;  Zan, Feixiang;  Zhang, Weilan;  Hao, Tianwei
Favorite | TC[WOS]:27 TC[Scopus]:28  IF:9.7/9.4 | Submit date:2022/03/04
Food Waste  Inoculum-to-substrate Ratio  Low Carbon  Methanogenesis  Methanogenic Pathway  Nitrogen Ratio Anaerobic Digestion  
Sewage sludge digestion beyond biogas: Electrochemical pretreatment for biochemicals Journal article
Zeng, Qian, Zan, Feixiang, Hao, Tianwei, Khanal, Samir Kumar, Chen, Guanghao. Sewage sludge digestion beyond biogas: Electrochemical pretreatment for biochemicals[J]. Water Research, 2022, 208, 117839.
Authors:  Zeng, Qian;  Zan, Feixiang;  Hao, Tianwei;  Khanal, Samir Kumar;  Chen, Guanghao
Favorite | TC[WOS]:19 TC[Scopus]:26  IF:11.4/12.2 | Submit date:2022/02/21
Anaerobic Digestion  Electrochemical Process  Resource Recovery  Volatile Fatty Acids (Vfa)  Waste Activated Sludge  
Biogenic sulfide for azo dye decolorization from textile dyeing wastewater Journal article
Zeng, Qian, Wang, Yu, Zan, Feixiang, Khanal, Samir Kumar, Hao, Tianwei. Biogenic sulfide for azo dye decolorization from textile dyeing wastewater[J]. Chemosphere, 2021, 283, 131158.
Authors:  Zeng, Qian;  Wang, Yu;  Zan, Feixiang;  Khanal, Samir Kumar;  Hao, Tianwei
Favorite | TC[WOS]:26 TC[Scopus]:34  IF:8.1/7.7 | Submit date:2021/12/08
Azo Dye  Biogenic Sulfide  Decolorization  Sulfate-reducing Bacteria  Textile Wastewater  
A novel approach for rapidly measuring volatile fatty acids in anaerobic process Journal article
Zan, Feixiang, Zeng, Qian, Chi, Kun, Hao, Tianwei, Ekama, George A.. A novel approach for rapidly measuring volatile fatty acids in anaerobic process[J]. Water Research, 2020, 182, 115960.
Authors:  Zan, Feixiang;  Zeng, Qian;  Chi, Kun;  Hao, Tianwei;  Ekama, George A.
Favorite | TC[WOS]:8 TC[Scopus]:9  IF:11.4/12.2 | Submit date:2021/12/06
Alkalinity  Anaerobic Processes  Buffer Intensity  Five Ph Point Titration  Volatile Fatty Acids