人物經歷
教育經歷
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| 中國科學院大學(培養單位:中國科學院生態環境研究中心) |
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工作經歷
研究方向
主要從事工業及園區污水低碳深度淨化與資源化相關研究與技術套用,重點面向低碳約束下定向分離主導的膜分離與膜污染控制過程、高級還原與氧化複合過程、異相類芬頓過程、物化-生化耦合新工藝過程等開展工作。
科研成果
發表文章
1. Han, J.-L.; Haider, M. R.; Liu, M.-J.; Wang, H.-c.; Jiang, W.-L.; Ding, Y.-C.; Hou, Y.-N.; Cheng, H.-Y.; Xia, X.; Wang, A.-J., Borate Inorganic Crosslinked Durable Graphene Oxide Membrane Preparation and Membrane Fouling Control. Environmental science & technology 2018, 53, (3), 1501-1508.
2. Liu, H.; Han, J.; Yuan, J.; Liu, C.; Wang, D.; Liu, T.; Liu, M.; Luo, J.; Wang, A.; Crittenden, J. C., Deep Dehalogenation of Florfenicol Using Crystalline CoP Nanosheet Arrays on a Ti Plate via Direct Cathodic Reduction and Atomic H. Environmental science & technology 2019, 53, (20), 11932-11940.
3. Jiang, W.-L.; Xia, X.; Han, J.-L.; Ding, Y.-C.; Muhammad, R. H.; Wang, A., Graphene modified electro-Fenton catalytic membrane for in-situ degradation of antibiotic florfenicol. Environmental science & technology 2018.
4. Han, J.-L.; Zhang, D.; Jiang, W.; Tao, Y.; Liu, M.-J.; Haider, M. R.; Ren, R.-Y.; Wang, H.-c.; Jiang, W.-L.; Ding, Y.-C., Tuning the Functional Groups of a Graphene Oxide Membrane by· OH Contributes to the Nearly Complete Prevention of Membrane Fouling. Journal of Membrane Science 2019, 579, 190-197.
5. Han, J. L.; Xia, X.; Tao, Y.; Yun, H.; Hou, Y. N.; Zhao, C. W.; Luo, Q.; Cheng, H. Y.; Wang, A. J., Shielding membrane surface carboxyl groups by covalent-binding graphene oxide to improve anti-fouling property and the simultaneous promotion of flux. Water research 2016, 102, 619-628.
6. Han, J.-L.; Xia, X.; Haider, M. R.; Jiang, W.-L.; Tao, Y.; Liu, M.-J.; Wang, H.-c.; Ding, Y.-C.; Hou, Y.-N.; Cheng, H.-Y., Functional graphene oxide membrane preparation for organics/inorganic salts mixture separation aiming at advanced treatment of refractory wastewater. Science of The Total Environment 2018, 628, 261-270.
7. Liu, T.; Ding, Y.; Liu, C.; Han, J.; Wang, A., UV activation of the pi bond in pyridine for efficient pyridine degradation and mineralization by UV/H2O2 treatment. Chemosphere 2020, 127208.
8. Jiang, W.-L.; Ding, Y.-C.; Haider, M. R.; Han, J.-L.; Liang, B.; Xia, X.; Yang, L.-M.; Wang, H.-c.; Peng, Y.-Z.; Wang, A.-J., A novel TiO2/graphite felt photoanode assisted electro-Fenton catalytic membrane process for sequential degradation of antibiotic florfenicol and elimination of its antibacterial activity. Chem. Eng. J. 2019, 123503.
9 Ding, Y.; Jiang, W.; Liang, B.; Han, J.; Cheng, H.; Haider, M. R.; Wang, H.; Liu, W.; Liu, S.; Wang, A., UV photolysis as an efficient pretreatment method for antibiotics decomposition and their antibacterial activity elimination. Journal of hazardous materials 2020, 392, 122321.
10. Ren, R.-Y.; Yang, L.-H.; Han, J.-L.; Cheng, H.-Y.; Ajibade, F. O.; Guadie, A.; Wang, H.-C.; Liu, B.; Wang, A.-J., Perylene pigment wastewater treatment by fenton-enhanced biological process. Environmental Research 2020, 109522.
11. Wang, H.-C.; Cui, D.; Han, J.-L.; Cheng, H.-Y.; Liu, W.-Z.; Peng, Y.-Z.; Chen, Z.-B.; Wang, A.-J., A2O-MBR as an efficient and profitable unconventional water treatment and reuse technology: A practical study in a green building residential community. Resources, Conservation and Recycling 2019, 150, 104418.
12. Liu, M.; Zhang, D.; Han, J.; Liu, C.; Ding, Y.; Wang, Z.; Wang, A., Adsorption enhanced photocatalytic degradation sulfadiazine antibiotic using porous carbon nitride nanosheets with carbon vacancies. Chem. Eng. J. 2020, 382, 123017.
13. 張勇; 韓京龍; 冉治霖, CAST工藝處理低溫低碳氮比市政污水中試研究. 環境工程 2017, (9).
14. Wang, H.-C.; Cheng, H.-Y.; Cui, D.; Zhang, B.; Wang, S.-S.; Han, J.-L.; Su, S.-G.; Chen, R.; Wang, A.-J., Corrugated stainless-steel mesh as a simple engineerable electrode module in bio-electrochemical system: Hydrodynamics and the effects on decolorization performance. Journal of hazardous materials 2017, 338, 287-295.
15. Wang, H.-C.; Cheng, H.-Y.; Wang, S.-S.; Cui, D.; Han, J.-L.; Hu, Y.-P.; Su, S.-G.; Wang, A.-J., Efficient treatment of azo dye containing wastewater in a hybrid acidogenic bioreactor stimulated by biocatalyzed electrolysis. Journal of Environmental Sciences 2016, 39, 198-207.
16. Hou, Y.-N.; Liu, H.; Han, J.-L.; Cai, W.; Zhou, J.; Wang, A.-J.; Cheng, H.-Y., Electro-active biofilm serving as the green synthesizer and stabilizer for in-situ fabricating 3D nano-palladium network: an efficient electrocatalyst. ACS Sustainable Chemistry & Engineering 2016.
17. Cai, W.; Liu, W.; Han, J.; Wang, A., Enhanced hydrogen production in microbial electrolysis cell with 3D self-assembly nickel foam-graphene cathode. Biosensors & Bioelectronics 2016, 80, 118-122.
18. Haider, M. R.; Jiang, W.-L.; Han, J.-L.; Sharif, H. M. A.; Ding, Y.-C.; Cheng, H.-Y.; Wang, A.-J., In-situ electrode fabrication from polyaniline derived N-doped carbon nanofibers for metal-free electro-Fenton degradation of organic contaminants. Applied Catalysis B: Environmental 2019, 117774.
19. Hou, Y.-N.; Zhang, B.; Yun, H.; Yang, Z.-N.; Han, J.-L.; Zhou, J.; Wang, A.-J.; Cheng, H.-Y., Palladized cells as suspension catalyst and electrochemical catalyst for reductively degrading aromatics contaminants: Roles of Pd size and distribution. Water research 2017, 125, 288-297.
20. Zhao, C.; Yang, B.; Han, J.; Meng, Y.; Yu, L.; Hou, D.; Wang, J.; Zhao, Y.; Zhai, Y.; Wang, S., Preparation of carboxylic multiwalled-carbon-nanotube–modified poly (m-phenylene isophthalamide) hollow fiber nanofiltration membranes with improved performance and application for dye removal. Applied Surface Science 2018, 453, 502-512.
21. Hou, Y.-N.; Sun, S.-Y.; Yang, Z.-N.; Yun, H.; Zhu, T.-t.; Ma, J.-F.; Han, J.-L.; Wang, A.-J.; Cheng, H.-Y., Shewanella oneidensis MR-1 self-assembled Pd-cells-rGO conductive composite for enhancing electrocatalysis. Environmental Research 2020, 109317.
22. Ai-Jie Wang; Hong-Cheng Wang; Hao-Yi Cheng; Bin Liang; Wen-Zong Liu; Jing-Long Han; Bo Zhang; Shu-Sen Wang, Electrochemistry-Stimulated Environmental Bioremediation: Development of Applicable Modular Electrode and System Scale-up. Environmental Science and Ecotechnology 2020, 100050.
23. Jiang, W.-L.; Haider, M. R.; Han, J.-L.; Ding, Y.-C.; Li, X.-Q.; Wang, H.-C.; Sharif, H. M. A.; Wang, A.-J.; Ren, N.-Q., Carbon nanotubes intercalated RGO electro-Fenton membrane for coenhanced permeability, rejection and catalytic oxidation of organic micropollutants. Journal of Membrane Science 2021, 119069.
科研項目
| 面向高耗能、重污染行業的綠色高效清潔生產關鍵技術集成與套用 |
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| 氧化石墨烯膜表面官能團原位調諧與膜污染控制機制研究 |
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| 江蘇某農化有限公司污水處理站高濃度污水處理工藝改造研究 |
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| 電極微納界面調控及強化微污染廢水疏水性難降解有機物深度去除協同增效機制 |
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套用工程
(1)2012-2013黑龍江大慶某低溫低碳氮比污水處理中試及調試工程, 3萬噸/天,技術負責人
(2)2014-2018江蘇某經濟開發區污水處理廠升級改造工程,4萬噸/天,生物強化CASS段,複合水解酸化段共同技術負責人,現場施工負責人
(3)2018-2018 江蘇泰州某化工企業高含酚廢水處理工程,1000噸/天,技術負責人
(4)2018-2021 遼寧遼陽某化工有限公司污水處理工程,500噸/天,共同技術負責人,設計負責人
(5)2019-2020 湖南嶽陽某工業園區污水處理工藝最佳化項目,2萬噸/天,技術負責人
(6)2020-2020 貴州遵義某污水處理廠工藝最佳化及調試工程,2萬噸/天,生化段技術負責人
(7)2018年-2020年 泰州某農化污水處理廠技術支持及升級改造工程,300噸/天,技術負責人
(8)2020年-2020 新鄉某再生纖維素廢水深度淨化工程,2.3萬噸/天,技術負責人
(9)2020-至今 濰坊某製藥企業污水處理廠工藝改造及深度淨化工程,1500噸/天,技術負責人
(10)2020-2021 濰坊某紫外催化水質深度淨化工程,1萬噸/天,技術負責人