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Insights into the role of electrochemical stimulation on sulfur-driven biodegradation of antibiotics in wastewater treatment
Journal article
Quan, Haoting, Jia, Yanyan, Zhang, Huiqun, Ji, Fahui, Shi, Yongsen, Deng, Qiujin, Hao, Tianwei, Khanal, Samir Kumar, Sun, Lianpeng, Lu, Hui. Insights into the role of electrochemical stimulation on sulfur-driven biodegradation of antibiotics in wastewater treatment[J]. Water Research, 2024, 266, 122385.
Authors:
Quan, Haoting
;
Jia, Yanyan
;
Zhang, Huiqun
;
Ji, Fahui
;
Shi, Yongsen
; et al.
Favorite
|
TC[WOS]:
0
TC[Scopus]:
0
IF:
11.4
/
12.2
|
Submit date:2024/10/10
Cytochrome c
Electrochemical Stimulation
Electrochemical-coupled Sulfur-mediated Biological System
Extracellular Electron Transfer
Machine learning revealing overlooked conjunction of working volume and mixing intensity in anammox optimization
Journal article
Ji, Bohua, Kuok, Sin Chi, Hao, Tianwei. Machine learning revealing overlooked conjunction of working volume and mixing intensity in anammox optimization[J]. Water Research, 2024, 266, 122344.
Authors:
Ji, Bohua
;
Kuok, Sin Chi
;
Hao, Tianwei
Favorite
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TC[WOS]:
0
TC[Scopus]:
0
IF:
11.4
/
12.2
|
Submit date:2024/09/03
Anammox Optimization
Bayesian Inference
Input Power
Mixing Intensity
Velocity Field
Disentangling microbial niche balance and intermediates’ trade-offs for anaerobic digestion stability and regulation
Journal article
Xiao, Yihang, Mackey, Hamish R., Tang, Wentao, Lu, Hui, Hao, Tianwei. Disentangling microbial niche balance and intermediates’ trade-offs for anaerobic digestion stability and regulation[J]. Water Research, 2024, 261, 122000.
Authors:
Xiao, Yihang
;
Mackey, Hamish R.
;
Tang, Wentao
;
Lu, Hui
;
Hao, Tianwei
Favorite
|
TC[WOS]:
0
TC[Scopus]:
0
IF:
11.4
/
12.2
|
Submit date:2024/08/05
Ammonia Inhibition
Anaerobic Digestion
Microbial Niche
Nutrient Imbalance
Volatile Fatty Acid Inhibition
Investigating the Intense Sediment Load by Dam-Break Floods Using a Meshless Two-Phase Mathematical Model
Journal article
Guan, Xiafei, Hu, Kailun, Chen, Xin, Gao, Junliang, Shi, Huabin. Investigating the Intense Sediment Load by Dam-Break Floods Using a Meshless Two-Phase Mathematical Model[J]. Water Resources Research, 2024, 60(7), e2023WR035339.
Authors:
Guan, Xiafei
;
Hu, Kailun
;
Chen, Xin
;
Gao, Junliang
;
Shi, Huabin
Favorite
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TC[WOS]:
0
TC[Scopus]:
0
IF:
4.6
/
5.9
|
Submit date:2024/08/05
Bed Load Transport
Dam-break Flood
Disaster Emergency Management
Two-phase Sph Model
Carbon fixation via volatile fatty acids recovery from sewage sludge through electrochemical–pretreatment–based anaerobic digestion
Journal article
Tan, Yunkai, Xiao, Yihang, Hao, Tianwei. Carbon fixation via volatile fatty acids recovery from sewage sludge through electrochemical–pretreatment–based anaerobic digestion[J]. Water Research, 2024, 258, 121736.
Authors:
Tan, Yunkai
;
Xiao, Yihang
;
Hao, Tianwei
Favorite
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TC[WOS]:
2
TC[Scopus]:
2
IF:
11.4
/
12.2
|
Submit date:2024/06/05
Anaerobic Digestion
Electrochemical Pretreatment
Interfacial Thermodynamics
Molecular Docking
Sewage Sludge
Volatile Fatty Acid
Long-term stable and efficient degradation of ornidazole with minimized by-product formation by a biological sulfidogenic process based on elemental sulfur
Journal article
Jiajia Zeng, Shuqun Xu, Keyue Lin, Si Yao, Bin Yang, Zhanhui Peng, Tianwei Hao, Xiaoyu Yu, Tingting Zhu, Feng Jiang, Jianliang Sun. Long-term stable and efficient degradation of ornidazole with minimized by-product formation by a biological sulfidogenic process based on elemental sulfur[J]. Water Research, 2024, 249, 120940.
Authors:
Jiajia Zeng
;
Shuqun Xu
;
Keyue Lin
;
Si Yao
;
Bin Yang
; et al.
Favorite
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TC[WOS]:
3
TC[Scopus]:
3
IF:
11.4
/
12.2
|
Submit date:2024/02/16
Biological Sulfur Conversion
Nitroimidazole Antibiotics
Reducing Sulfur Species
Nucleophilic Substitution
From micro to macro: The role of seawater in maintaining structural integrity and bioactivity of granules in treating antibiotic-laden mariculture wastewater
Journal article
Guangsheng Qian, Jingyi Shao, Peng Hu, Wentao Tang, Yihang Xiao, Tianwei Hao. From micro to macro: The role of seawater in maintaining structural integrity and bioactivity of granules in treating antibiotic-laden mariculture wastewater[J]. Water Research, 2023, 246, 120702.
Authors:
Guangsheng Qian
;
Jingyi Shao
;
Peng Hu
;
Wentao Tang
;
Yihang Xiao
; et al.
Favorite
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TC[WOS]:
2
TC[Scopus]:
2
IF:
11.4
/
12.2
|
Submit date:2023/10/25
Mariculture
Seawater
Granular Sludge
Sulfadiazine
Molecular Dynamics Simulation
Predicting aqueous sorption of organic pollutants on microplastics with machine learning
Journal article
Qiu, Ye, Li, Zhejun, Zhang, Tong, Zhang, Ping. Predicting aqueous sorption of organic pollutants on microplastics with machine learning[J]. Water Research, 2023, 244, 120503.
Authors:
Qiu, Ye
;
Li, Zhejun
;
Zhang, Tong
;
Zhang, Ping
Favorite
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TC[WOS]:
11
TC[Scopus]:
14
IF:
11.4
/
12.2
|
Submit date:2023/11/01
Hybrid Model
Machine Learning
Microplastics
Organic
Pplfer
Sorption
A chrysotile-based Fe/Ti nanoreactor enables efficient arsenic capture for sustainable environmental remediation
Journal article
Baolin Gao, Kai Liu, Fangbai Li, Liping Fang. A chrysotile-based Fe/Ti nanoreactor enables efficient arsenic capture for sustainable environmental remediation[J]. WATER RESEARCH, 2023, 231, 119613.
Authors:
Baolin Gao
;
Kai Liu
;
Fangbai Li
;
Liping Fang
Favorite
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TC[WOS]:
7
TC[Scopus]:
7
IF:
11.4
/
12.2
|
Submit date:2023/04/03
Arsenic
Chrysotile
Contaminant Immobilization
Iron (Hydro)Oxides
Life Cycle Assessment
Development of cost-effective and long-lasting integrated technology for H2S control from sludge in wastewater treatment plants
Journal article
Hao, Tianwei, Zeng, Jiajia, Pan, Jianyu, Huang, Wenzhuo, Kong, Zhe, Sun, Jianliang. Development of cost-effective and long-lasting integrated technology for H2S control from sludge in wastewater treatment plants[J]. Environmental Science-Water Research & Technology, 2023, 9(2), 433-441.
Authors:
Hao, Tianwei
;
Zeng, Jiajia
;
Pan, Jianyu
;
Huang, Wenzhuo
;
Kong, Zhe
; et al.
Favorite
|
TC[WOS]:
3
TC[Scopus]:
2
IF:
3.5
/
4.5
|
Submit date:2023/01/30