Personal Information
Supervisor of Master's Candidates
Supervisor of Doctorate Candidates
-
Date of Birth:
1989-08-26 -
E-Mail:
53a4dfae6b258cd002545f980df6c1e9eb47e702b26d75b670ca7b1a6e7f7be1e39806563d5104f285d9428d3c0dfa5dee5e688a8017b747f780e77e7adbb14144e9435f97f970f9b88a68376846bbbda20125877ae70d1e70a83c8b883c5f9920eeeb4e6f426f4627857e3bfa7e42cdb7fe3941f90535de04b943d8d302da43 -
School/Department:
土木建筑工程学院 -
Business Address:
土木建筑工程学院(工学部10教)209 -
Gender:
Male -
Status:
Employed -
Alma Mater:
武汉大学、哈尔滨工业大学 -
Teacher College:
School of Civil Engineering
Other Contact Information
-
email:
53a4dfae6b258cd002545f980df6c1e9eb47e702b26d75b670ca7b1a6e7f7be1e39806563d5104f285d9428d3c0dfa5dee5e688a8017b747f780e77e7adbb14144e9435f97f970f9b88a68376846bbbda20125877ae70d1e70a83c8b883c5f9920eeeb4e6f426f4627857e3bfa7e42cdb7fe3941f90535de04b943d8d302da43
Profile
基本信息
学历:博士
出生年月:1989/08
Email:shaosenlin@whu.edu.cn
地址:武汉大学土木建筑工程学院209室
教育及工作经历
2020/12- 武汉大学 土木建筑工程学院,副教授, 市政系党支部书记
2019/02-2020/11 武汉大学 土木建筑工程学院,特聘副研究员
2018/01-2020/01 香港大学 土木工程系,香江学者,导师:汤初阳 教授
2016/02-2019/02 武汉大学 土木建筑工程学院,师资博士后(3+3),导师:李江云 教授
2010/09-2016/01 哈尔滨工业大学 市政工程,博士,导师:李圭白 院士
2006/09-2010/06 武汉大学 水务工程,学士,导师:方正 教授
研究方向
膜法水处理技术
主要涉及:1)新方法——深入理解膜过程
2)新工艺——低维护、高效能膜工艺的开发及应用
3)新材料——针对膜过程和新工艺的膜材料的开发
授课信息
《给排水工程概论》、《城市给排水工程》、《水处理工艺试验》
主持或参加科研项目
1. 国家自然科学基金面上项目,52270077,2023-2026,54万元,主持
2. 国家自然科学基金面上项目,52070147,2021-2024,59万元,主持
3. 国家自然科学基金青年基金,51608396,2017-2019,20万元,主持
4. 湖北省“青年拔尖人才”, 2024-2026, 60万,主持
5. "香江学者"计划,XJ2017039,2018-2020,60万,主持
6. 武汉市知识创新专项,2023020201020241,2023-2025,5万,主持
7. 中国博士后科学基金特别资助(第10批),2017T100578,2017-2018,15万,主持
8. 中国博士后科学基金面上资助(第59批),2016M592386,2016-2018,5万元,主持
9. 城市水资源与水环境国家重点实验室开放课题,HC201709,2017-2018,4万元,主持。
代表性论文
目前在Environmental Science & Technology (3), Water Research (7), Journal of Membrane Science (7)等期刊上发表论文60余篇,其中,一作/通讯SCI论文46篇。他引三千余次,H因子32,ESI高被引论文6篇,热点论文3篇。
Google学术链接https://scholar.google.com/citations?user=XMjxoHgAAAAJ&hl=en&oi=ao
2024年
[46] Huizhi Hu, Fang Xu, Rui Wang, Chu Zhou, Na Li, Senlin Shao*. Achieving zero fouling in the ultrafiltration for secondary water supply systems in the absence of residual chlorine. Water Research. 2024, 253: 121281.
[45] Chu Zhou, Na Li, Wenbin Guo, Rui Wang, Yaohua Yan, Senlin Shao*. Removing Refractory Organic Substances from Landfill Leachate using a Nanofiltration Membrane Bioreactor: Performance and Mechanisms. Chemical Engineering Journal, 2024.
[44] Hongting Wan, Fanxi Zeng, Huarong Yu, Zhouyang Zhuang, Alicia Kyoungjin An, Senlin Shao*, Fangshu Qu*. Crossflow-induced membrane vibration and its effects on fouling and scaling in direct contact membrane distillation. Journal of Membrane Science. 2024, 694:122410.
[43] Rui Wang#, Huizhi Hu#, Danting Shi, Jinsong Liang, Senlin Shao*. Mechanism of Mn(II) removal by the cake layer containing biogenic manganese oxides in a flow-through mode: Biological or chemical catalysis? Separation and Purification Technology. 2024, 330, 125214.
[42] Qinyi Ye#, Chu Zhou#, Jiangshuai Hu, Bin Ji*, Senlin Shao*. Presence of iron oxide particles can reduce the cake fouling in UF systems. Separation and Purification Technology, 2024.
[41] Yuanrou Fan, Lin Shi, Yu Huang, Liandong Zhu, Hua Zhu, Xuhui Mao, Le Shi, Senlin Shao*, Xu Wang*. Electrocagulation Coupled With Carbon Fiber Filtration Enables Stable Performance and Low Sludge Production over a Broad Range of Operating Temperatures. ACS ES&T Engineering, 2024
2024年以前
[40] Senlin Shao, Fanxi Zeng, Li Long, Xuewu Zhu, Lu Elfa Peng, Fei Wang, Zhe Yang*, and Chuyang Y. Tang*. Nanofiltration Membranes with Crumpled Polyamide Films: A Critical Review on Mechanisms, Performances, and Environmental Applications. Environmental Science & Technology, 2022, 56 (18): 12811-12827.
[39] Danting Shi, Tengjing Gong, Weihua Qing, Xianhui Li, and Senlin Shao*. Unique Behaviors and Mechanism of Highly Soluble Salt-Induced Wetting in Membrane Distillation. Environmental Science & Technology, 2022, 56(20): 14788-14796.
[38] Senlin Shao#, Danting Shi#, Jiangshuai Hu, Weihua Qing, Xianhui Li, Xue Li, Bin Ji, Zhe Yang, Hao Guo, and Chuyang Y. Tang*. Unraveling the Kinetics and Mechanism of Surfactant-Induced Wetting in Membrane Distillation: An In Situ Observation with Optical Coherence Tomography. Environmental Science & Technology, 2022, 56(1): 556-563.
[37] Bin Liu, Yin Jun, Changrong Zhao, Chu Zhou, Tingting Zhu*, Senlin Shao*. Using Fe(II)/Fe(VI) activated peracetic acid as pretreatment of ultrafiltration for secondary effluent treatment: water quality improvement and membrane fouling mitigation. Water Research, 2023, 244: 120533.
[36] Danting Shi, Tengjing Gong, Rui Wang, Weihua Qing, Senlin Shao*. Control the hydrophilic layer thickness of Janus membranes by manipulating membrane wetting in membrane distillation, Water Research, 2023, 237: 119984.
[35] Hongting Wan#, Xianhui Li#, Yusen Luo, Danting Shi, Tengjing Gong, Alicia Kyoungjin An, Senlin Shao*. Early monitoring of pore wetting 1 in membrane distillation using ultrasonic time-domain reflectometry (UTDR). Water Research, 2023, 240: 120081.
[34] Danting Shi, Yang Liu, Wenwen Fu, Jiangyun Li, Zheng Fang, Senlin Shao*. A combination of membrane relaxation and shear stress significantly improve the flux of gravity-driven membrane system. Water Research, 2020, 175: 115694.
[33] Senlin Shao, Wenwen Fu, Xiujuan Li, Danting Shi, Yu Jiang, Jiangyun Li, Tengjing Gong, Xue Li*. Membrane fouling by the aggregations formed from oppositely charged organic foulants. Water Research, 2019, 159: 95-101.
[32] Senlin Shao, Yijing Feng, Huarong Yu, Jiangyun Li, Heng Liang, Guibai Li. Presence of an adsorbent cake layer improves the performance of gravity-driven membrane (GDM) filtration system. Water Research, 2017, 108: 240-249.
[31] Yusen Luo#, Senlin Shao#, Jiahao Mo, Yang Yang, Zhangxin Wang, Xianhui Li*. Spatio-temporal progression and influencing mechanism of local wetting in membrane distillation. Journal of Membrane Science, 2023, 670: 121374.
[30] Danting Shi, Fanxi Zeng, Tengjing Gong, Jiangyun Li, Senlin Shao*. Iron amended gravity-driven membrane (IGDM) system for heavy-metal-containing groundwater treatment. Journal of Membrane Science, 2022, 643: 120067.
[29] Senlin Shao#, Yueqi Li#, Tianci Jin, Wushuang Liu, Danting Shi, Jun Wang, Yi Wang, Yu Jiang, Jiangyun Li, Hui Li*. Biofouling layer maintains low hydraulic resistances and high ammonia removal in the UF process operated at low flux. Journal of Membrane Science, 2020, 596: 117612.
[28] Senlin Shao, Luyang Cai, Kai Li, Jiangyun Li*, Xing Du, Guibai Li, Heng Liang*. Deposition of powdered activated carbon (PAC) on ultrafiltration (UF) membrane surface: influencing factors and mechanisms. Journal of Membrane Science, 2017, 530: 104-111.
[27] Senlin Shao, Heng Liang*, Fangshu Qu, Kai Li, Haiqing Chang, Huarong Yu, Guibai Li. Combined influence by humic acid (HA) and powdered activated carbon (PAC) particles on ultrafiltration membrane fouling. Journal of Membrane Science, 2016, 500: 99-105.
[26] Senlin Shao, Heng Liang*, Fangshu Qu, Huarong Yu, Kai Li, Guibai Li. Fluorescent natural organic matter fractions responsible for ultrafiltration membrane fouling: Identification by adsorption pretreatment coupled with parallel factor analysis of excitation–emission matrices. Journal of Membrane Science, 2014, 464: 33-42.
[25] Chu Zhou, Senlin Shao*#, Keyin Xiong, Chuyang.Y Tang*. Nanofiltration-Based Membrane Bioreactor Operated under an Ultralow Flux: Fouling Behavior and Feasibility toward a Low-Carbon System for Municipal Wastewater Reuse. ACS ES&T Engineering, 2023, 3(9): 1267-1275.
[24] Rui Wang, Huizhi Hu, Chu Zhou, Senlin Shao*. Exploring the Growth Pattern and Hydraulic Resistance of BioMnOx Cake Layer under Different Fluxes in Ultrafiltration Processes. ACS ES&T Engineering, 2023, 3(11): 1898-1907.
[23] Tingting Zhu, Bin Liu*, Senlin Shao*. Peracetic Acid-Based Oxidation for Ultrafiltration during Natural Water Treatment: Significant Performance Enhancement and Novel Prediction Based on PARAFAC-EEMs Coupling. ACS ES&T Water, 2023, 3(7): 1789–1802.
[22] Changrong Zhao, Bin Liu*, Senlin Shao*, Bart Van der Bruggen. Ultra-low pressure driven photo-catalytic membrane with zero fouling performance. Chemical Engineering Journal, 2023, 474, 145816.
[21] Jiangshuai Hu, Bin Ji, Rui Wang, Danting Shi, Senlin Shao*. Fouling by inorganic-particle-containing cake layers can be reduced by microorganisms at low fluxes. Separation and Purification Technology, 2023, 315: 123659.
[20] Zhiwei Zhou, Yaohua Yan, Xing Li, Fanxi Zeng, Senlin Shao*. Effect of urea-based chemical cleaning on TrOCs rejection by nanofiltration membranes. Separation and Purification Technology, 2023, 315: 123662.
[19] Chu Zhou, Yuanyuan Luo, Keying Xiong, Senlin Shao*. A low-maintenance process for decentralized water purification using nanofiltration operated at ultralow flux. Separation and Purification Technology, 2023, 327: 124869.
[18] Zhijun Liu, Xi Luo, Senlin Shao*, Xue Xia*. Electrocatalytic reduction of nitrate using Pd-Cu modified carbon nanotube membranes. Frontiers of Environmental Science & Engineering, 2023, 17(4):40.
[17] Tengjing Gong, Danting Shi, Zhigao Zhu, Bin Liu*, Senlin Shao*. Polyamide Thin-Film Composite Janus Membranes Avoiding Direct Contact between Feed Liquid and Hydrophobic Pores for Excellent Wetting Resistance in Membrane Distillation. ACS ES&T Water, 2022, 3(1): 176-184.
[16] Yu Jiang, Yu Shang, Wei Zhang, Xiangling Zhang, Jiangyun Li, Senlin Shao*. Assessing the effect of SiO2 and TiO2 nanoparticles on granule stability and microbial community shift in aerobic granular sludge process. Chemosphere, 2022, 307: 135677.
[15] Hao Guo#, Xianhui Li#, Wulin Yang, Zhikan Yao, Ying Mei, Lu Elfa Peng, Zhe Yang, Senlin Shao*, Chuyang Y. Tang*. Nanofiltration for drinking water treatment: a review. Frontiers of Chemical Science and Engineering, 2022, 16: 681–698.
[14] Yu Jiang, Yang Liu, Danting Shi, Wenwen Fu, Peng-Fei Sun, Jiangyun Li, Senlin Shao*. Membrane fouling in a powdered activated carbon – membrane bioreactor (PAC-MBR) for micro-polluted water purification: Fouling characteristics and the roles of PAC. Journal of Cleaner Production, 2020, 277: 122341.
[13] Yujie Zhao#, Senlin Shao#, Jiangbin Xia, Ya Huang, Yu Chi Zhang, Xue Li*, Tao Cai*. Hydrophilic ultrafiltration membranes with surface-bound eosin Y for an integrated synthesis-separation system of aqueous RAFT photopolymerization. Journal of Materials Chemistry A, 2020, 8(19): 9825-9831.
[12] Xianhui Li#, Senlin Shao#, Yang Yang, Ying Mei, Weihua Qing, Hao Guo, Lu Elfa Peng, Peng Wang, Chuyang Y. Tang*. Engineering Interface with a One-Dimensional RuO2/TiO2 Heteronanostructure in an Electrocatalytic Membrane Electrode: Toward Highly Efficient Micropollutant Decomposition. ACS Applied Materials & Interfaces, 2020, 12(19): 21596-21604.
[11] Yu Jiang, Yang Liu, Huining Zhang, Kai Yang, Jiangyun Li, Senlin Shao*, Aerobic granular sludge shows enhanced resistances to the long-term toxicity of Cu(II). Chemosphere, 2020, 253: 126664.
[10] Senlin Shao#*, Yang Liu#; Danting Shi, Weihua Qing, Wenwen Fu, Jiangyun Li, Zheng Fang, Yiqun Chen*. Control of organic and surfactant fouling using dynamic membranes in the separation of oil-in-water emulsions. Journal of Colloid and Interface Science, 2020, 560: 787-794.
[9] Yu Jiang, Yu Shang, Tengjing Gong, Zixin Hu, Kai Yang, Senlin Shao*. High concentration of Mn2+ has multiple influences on aerobic granular sludge for aniline wastewater treatment. Chemosphere, 2020, 240: 124945.
[8] Yiqun Chen, Yang Tong, Yingwen Xue, Zizheng Liu, Min Tang, Li-Zhi Huang*; Senlin Shao*; Zheng Fang. Degradation of the β-blocker propranolol by sulfite activation using FeS. Chemical Engineering Journal, 2020, 385: 123884.
[7] Hui Li, Bin Wang, Songping Deng, Jingcheng Dai, Senlin Shao*. Oxygen-containing functional groups on bioelectrode surface enhance expression of c-type cytochromes in biofilm and boost extracellular electron transfer. Bioresource Technology, 2019, 292: 121995.
[6] Senlin Shao, Danting Shi, Yueqi Li, Yang Liu, Zhiying Lu, Zheng Fang, Heng Liang*. Effects of water temperature and light intensity on the performance of gravity-driven membrane system. Chemosphere, 2019, 216: 324-330.
[5] Yiqun Chen, Shuxian Gao, Zizheng Liu, Senlin Shao*, Weizhao Yin, Zheng Fang, and Li-Zhi Huang*. Prolonged persulfate activation by UV irradiation of green rust for the degradation of organic pollutants. Environmental Chemistry Letters, 2019, 17(2): 1017-1021.
[4] Senlin Shao, Yue Wang, Danting Shi, Xuezhi Zhang, Chuyang Y. Tang, Zizheng Liu, Jiangyun Li. Biofouling in ultrafiltration process for drinking water treatment and its control by chlorinated-water and pure water backwashing. Science of the Total Environment, 2018, 644: 306-314.
[3] Senlin Shao, Fangshu Qu, Heng Liang, Haiqing Chang, Huarong Yu, Guibai Li. A pilot-scale study of powdered activated carbon - membrane bioreactor on the treatment of water with a high concentration of ammonia. Environmental Science: Water Research & Technology, 2016, 2: 125-133.
[2] Senlin Shao, Fangshu Qu, Heng Liang, Kai Li, Huarong Yu, Haiqing Chang, Guibai Li. Powdered activated carbon – membrane bioreactor operated under intermittent aeration and short sludge retention times for micro-polluted surface water treatment. International Biodeterioration & Biodegradation, 2015, 102: 81-88.
[1] Senlin Shao, Fangshu Qu, Heng Liang, Haiqing Chang, Huarong Yu, Guibai Li. Characterization of membrane foulants in a pilot-scale powdered activated carbon–membrane bioreactor for drinking water treatment. Process Biochemistry, 2014, 49: 1741-1746.
学生指导
入学 |
姓名 |
类别 |
工作单位 |
论文发表 |
获奖情况 |
邮箱 |
|
2016 |
冯亦静 |
专硕 |
中信建筑设计研究总院有限公司 |
WR 1篇 |
国家奖学金 |
1229015004@qq.com |
|
2017 |
付文文 |
学硕 |
武汉市公务员 |
WR 1篇 |
国家奖学金 |
fuwenwen@whu.edu.cn |
|
2018 |
刘洋 |
学硕 |
香港理工大学(读博) |
JCIS 1篇 在投文章1篇 |
雷军奖学金 |
LiuYang0059@whu.edu.cn |
|
2018 |
史丹汀 |
直博 |
香港理工大学博后 |
ES&T 2篇 WR 2篇 JMS 1篇 ES&T water 1篇 |
武汉大学学术创新一等奖 国家奖学金2次 |
shidanting@whu.edu.cn |
|
2020 |
龚腾菁 |
学硕 |
深圳荔园小学 |
ES&T water 1篇 |
ang19990801@gmail.com |
||
2020 |
罗远源 |
专硕(少干) |
长沙水业集团 |
SPT 1篇 |
460002649@qq.com |
||
2021 |
曾凡喜 |
学硕 |
广州市选调生 | ES&T 1篇 |
龙湖奖学金 |
2016301550062@whu.edu.cn |
|
2021 |
周初 |
硕博连读 |
ES&T Engg. 1篇 SPT 2篇 CEJ 1篇 论文撰写3篇 |
zhou_c@whu.edu.cn |
|||
2022 |
熊可盈 |
学硕 |
xiongkeying@whu.edu.cn |
||||
2022 |
卢佳佳 |
专硕 |
武汉市公务员 | 1746483809@qq.com |
|||
2022 |
李娜 |
考博(少干) |
在投1篇 撰写1篇 |
646502636@qq.com |
|||
2022 |
万泓廷 |
直博 |
WR 1篇 JMS 1篇 论文撰写2篇 |
龙湖奖学金 全国研究生环境论坛 一等奖 |
2541846466@qq.com |
||
2023 |
罗亮 |
专硕(少干) |
撰写1篇 | 2314206266@qq.com | |||
2023 |
朱磊 |
直博 |
论文撰写1篇 |
zhulei202206@163.com |
|||
2024 |
米报龙 |
考博 |
|||||
2024 |
邢俊涛 |
学硕 |
|||||
2024 |
刘宏亮 |
专硕 |
欢迎有给排水、环境、化学、材料等背景的学生报考硕士、博士研究生,也欢迎本科生加入课题组。我们希望营造一个开放、
和谐、多产的课题组,以下是课题组的一些规则:
1. 所有学生均由导师亲自带;考虑到成果分配的争议,避免博士带硕士的情况。
2. 采用提纲式指导,避免放羊式指导和保姆式指导。
3. 不强加项目,鼓励大胆提出问题,强调博士期间思维的提升。
4. 结果导向,只要能做好研究,没有任何出勤要求。
5. 尽量避免让学生做与科研无关的事情,包括报账、横向课题等。与科研无关的工作有一定的劳务费,发表论文给予一定的
论文奖励。
6. 硕士生在完成硕士论文两章节工作之后,剩下的时间自由安排(如假期实习、考选调生)。
7. 尊重学生的付出,对于完成实验并撰写论文的学生保证署名一作。
8. 博士生的论文质与量并举,为学术道路奠定基础。
9. 为增强博士生的学术视野,鼓励博士生出国参加国际会议1次(课题组报销费用)或CSC出国交流1年。
10. 为让博士生找到更好的工作,可以提前预答辩,找到满意工作之后再正式答辩毕业,在此期间课题组可提供3000-5000/月的生活补助。
Educational Experience
-
2010.9 to 2016.1
哈尔滨工业大学 | Municipal Engineering | 博士 | 工学博士学位
导师:李圭白 院士 -
2006.9 to 2010.6
武汉大学 | 水务工程(给排水科学与工程) | 学士 | 工学学士学位(毕业论文导师:方正 教授)
毕业论文导师:方正 教授
Work Experience
-
2020.12 to Now
武汉大学 | 土木建筑工程学院 | 副教授
-
2018.1 to 2020.1
香港大学 | 土木工程系 | 博士后(香江学者)
导师:汤初阳 教授 -
2019.2 to 2020.11
武汉大学 | 土木建筑工程学院 | 特聘副研究员
-
2016.2 to 2019.2
武汉大学 | 土木建筑工程学院 | 师资博士后
导师:李江云 教授