个人信息
Personal Information
联系方式
Contact Information
个人简介
Personal Profile
本课题组是同济大学污染控制与资源化研究国家重点实验室的研究团队之一。在隋铭皓教授的带领下,经过18年的建设与发展,现本课题组已拥有了一支团结奋进、结构合理的研究队伍,共培养硕博研究生50余人。本团队密切关注国家科学与技术发展规划,围绕饮用水中有机污染物的去除和饮用水的微生物安全开展研究,形成了环境功能材料研发和应用,高级氧化技术,以及条件致病菌、抗生素抗性基因(ARGs)去除等特色鲜明的研究方向。先后主持二十余项国家及省部级的相关课题,其中包括国家重点研发计划课题、水专项课题子任务及5项国家自然科学基金项目。
多年来,全体成员潜心树业,在团队建设方面取得了较好的成绩。在科研成果方面,本团队在Environmental Science & Technology、 Water Research、Applied Catalysis B: Environmental、Chemical Engineering Journal及Journal of Hazardous Materials等期刊发表了多篇高水平文章;在科研制度建设方面,团队守正创新,持续改进。以实验室日报告制度确保绝对安全,消除安全隐患;以仪器管理预约制度确保科研仪器定人定责,合理分配;以分组值班,每周大扫除制度为团队成员提供温馨整洁的科研环境;在学生工作方面,多人曾担任党支部委员、院级研会主席团及部门负责人、兼职辅导员、班团干部、研究生教学助理等职务,多人曾获得国家奖学金、学业奖学金,以及优秀党员,优秀团干(员)等荣誉称号;在团队文化氛围建设方面,课题组曾在“课题组文化建设评比”活动中获得“最佳人气课题组”称号。一直以来,课题组秉持严谨求实的理念和积极乐观的精神,以导师对学生定期的科研指导,和学生之间的学术、文娱活动为基础,营造了浓厚的学术氛围,使得学生同心同行,共同进步。


主持的国家级和省部级主要科研项目
(1) 国家自然科学基金:“水能激发钛酸钡压电催化降解典型抗生素技术:基于机器学习的氧空位调控与多场耦合机制解析”,2026.1-2029.12(项目编号:52570010)
(2) 国家自然科学基金:“纳米n-Ag/SiO2@Fe3O4饮用水消毒抗菌性能与机理研究等”,2015.1-2018.12(项目编号:51478322)
(3) 国家自然科学基金:“有序介孔锰氧化物催化双氧水降解水中高稳定性有机污染物特性及机理研究”,2013.1-2016.12(项目编号:51278351)
(4) 国家自然科学基金:“层状双金属氢氧化物及氧化物催化臭氧氧化降解水中有机污染物技术研究”,2011.1-2013.12(项目编号:51078281)
(5) 国家自然科学基金:“天然有机物对多相催化臭氧氧化降解高稳定有机污染物影响研究”,2008.1-2010.12(项目编号:50708067)
(6) 国家重点研发计划:“城乡供水节水和水质提升技术研究与示范”课题,2019.12-2022.6(课题编号:2019YFC0408801)
(7) 水体污染控制与治理科技重大专项,巢湖市水源优化与水质保障技术研究与示范课题,巢湖饮用水水质净化工艺优化与技术示范任务,子任务负责人,2014.1-2019.6,(编号:2014ZX07405-003)
(8) 国家科技支撑计划:“应对太湖蓝藻水华的饮用水质保障应急技术研究及示范”(项目编号:200700000353)子课题“高藻水源水饮用水处理技术与工艺研究及示范”,子任务负责人,2007.8-2010.8
(9) 上海市自然科学基金:“通航河流饮用水源三丁基锡污染评价及控制技术”,2007.12-2009.12
(10) 全国百篇优秀博士论文:“饮用水水源与饮用水典型抗生素污染研究及其处理技术”,2008.1-2012.12
(11) 上海市启明星计划项目:“递进强化臭氧氧化水中高稳定性有机污染物技术研究”,2008.7.30-2010.7.31
(12) 内蒙古自治区重点研发项目:“内蒙古乌梁素海 PFCs 等新污染物“检测-治理-风险评价”技术研发与应用示范”,2025.6-2028.6(项目编号:2025YFHH0217,负责子任务)
上传附件
支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg上传附件
支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg上传附件
支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg主持的国家级和省部级主要科研项目
(1) 国家自然科学基金:“水能激发钛酸钡压电催化降解典型抗生素技术:基于机器学习的氧空位调控与多场耦合机制解析”,2026.1-2029.12(项目编号:52570010)
(2) 国家自然科学基金:“纳米n-Ag/SiO2@Fe3O4饮用水消毒抗菌性能与机理研究等”,2015.1-2018.12(项目编号:51478322)
(3) 国家自然科学基金:“有序介孔锰氧化物催化双氧水降解水中高稳定性有机污染物特性及机理研究”,2013.1-2016.12(项目编号:51278351)
(4) 国家自然科学基金:“层状双金属氢氧化物及氧化物催化臭氧氧化降解水中有机污染物技术研究”,2011.1-2013.12(项目编号:51078281)
(5) 国家自然科学基金:“天然有机物对多相催化臭氧氧化降解高稳定有机污染物影响研究”,2008.1-2010.12(项目编号:50708067)
(6) 国家重点研发计划:“城乡供水节水和水质提升技术研究与示范”课题,2019.12-2022.6(课题编号:2019YFC0408801)
(7) 水体污染控制与治理科技重大专项,巢湖市水源优化与水质保障技术研究与示范课题,巢湖饮用水水质净化工艺优化与技术示范任务,子任务负责人,2014.1-2019.6,560万元(2014ZX07405-003)
(8) 国家科技支撑计划:“应对太湖蓝藻水华的饮用水质保障应急技术研究及示范”(项目编号:200700000353)子课题“高藻水源水饮用水处理技术与工艺研究及示范”,子任务负责人,2007.8-2010.8
(9) 上海市自然科学基金:“通航河流饮用水源三丁基锡污染评价及控制技术”,2007.12-2009.12
(10) 全国百篇优秀博士论文:“饮用水水源与饮用水典型抗生素污染研究及其处理技术”,2008.1-2012.12
(11) 上海市启明星计划项目:“递进强化臭氧氧化水中高稳定性有机污染物技术研究”,2008.7.30-2010.7.31
(12) 内蒙古自治区重点研发项目:“内蒙古乌梁素海PFCs 等新污染物“检测-治理-风险评价”技术研发与应用示范”,2025.6-2028.6(项目编号:2025YFHH0217,负责子任务)
近三年发表的主要学术论文:
(1) Chundi Zhou, Sichu Xing, Jun Ma, Minghao Sui*.Synergistic Piezoelectric-Nanoscale Zero-Valent Iron Catalyst for PeroxyaceticAcid Activation: A Self-Driven Advanced Oxidation Process. Environmental Science &Technology, 2025, 59, 41,22285–22298 https://doi.org/10.1021/acs.est.5c08828
(2) Wei Zhuang, Qianqian Luo, Qingyang Jiang,Songhang Du, Xinwei Li, Jun Ma, Xiao Zhao, Minghao Sui*. Knowledge discoveryand performance-energy optimization in heterogeneous catalytic ozonation viaadaptive multi-task learning. Water Research, 2025, 287, 124422 https://doi.org/10.1016/j.watres.2025.124422
(3) Chundi Zhou, Yali Guo, Minghao Sui*. Mechanisticinsights into micro-battery adsorption and oxidation on activated carbonsupported L-histidine-coated nano zero-valent iron for sulfamethoxazole removal.ChemicalEngineering Journal. 2025, 515, 163393 https://doi.org/10.1016/j.cej.2025.163393
(4) Qianqian Luo, Wei Zhuang, Minghao Sui*. CombatingAntibiotic Resistance in Persulfate-Based Advanced Oxidation Processes:Activation Methods and Energy Consumption. Environmental Research. 2025, 270, 120932https://doi.org/10.1016/j.envres.2025.120932
(5) Fengjiao Zhang, Minghao Sui*. Progress ofpersulfate-based advanced oxidation process (PS-AOPs) coupled withultrafiltration membrane to alleviate membrane fouling: A review. EnvironmentalEngineering Research. 2025; 30(2): 240244 https://doi.org/10.4491/eer.2024.244
(6) Mianmo Li, Minghao Sui*. Interaction betweenMicroplastics and Antibiotics in Aquatic Environments and the Characteristicsof Composite Pollution Removal by Coagulation and Advanced Oxidation Methods. Progress in Chemistry. 2025, 37: 124-132 DOI: 10.7536/PC240617
(7) Lv Xinyuan, Yu Miao, Guo Yali, Sui Minghao*.Weak magnetic field for enhanced degradation of sulfamethoxazole by theCoFe2O4/PAA system, Insights into performance and mechanism. Separationand Purification Technology, 2025, 357, 130017 https://doi.org/10.1016/j.seppur.2024.130017
(8) Guo Yali, Zhou Chundi, Lv Xinyuan, DuSonghang, Sui Minghao*. Sustainable Co(III)/Co(II) cycles triggered by Co-Znbimetallic MOF encapsulating Fe nanoparticles for high-efficiency peraceticacid activation to degrade sulfamethoxazole, Enhanced performance andsynergistic mechanism. Separation and Purification Technology,2025, 354, 128729 https://doi.org/10.1016/j.seppur.2024.128729
(9) Wei Zhuang, Xiao Zhao, Qianqian Luo, XinyuanLv, Zhilin Zhang, Lihua Zhang, Minghao Sui*. Task decomposition strategy basedon machine learning for boosting performance and identifying mechanisms inheterogeneous activation of peracetic acid process, Water Research, 2024,267, 122521
(10) Chundi Zhou, Yali Guo, Songhang Du, MinghaoSui*. Ultrafast Fenton-like reaction using a peroxymonosulfate-mediatedconfined-Fe0 catalyst for the degradation of sulfamethoxazole, AppliedCatalysis B, Environment and Energy, 2024, 358, 124442
(11) Wei Zhuang, Xiao Zhao, Yiying Zhang, QianqianLuo, Lihua Zhang, Minghao Sui*. Autoencodedchemical feature interaction machinelearning method boosting performance of piezoelectric catalytic process, NanoEnergy, 2024, 126, 109670
(12) Wei Zhuang, Yiying Zhang, Qianqian Luo,Songhang Du, Binhong Wu, Minghao Sui*. Piezoelectric catalytic process, Agenuinely energy-saving approach for water Treatment? Acritical review, ChemicalEngineering Journal, 2024, 499, 155956
(13) Zhou Chundi, Sui Minghao*,Guo Yali, Du Songhang. Enhancing Fenton-like reaction through a multifunctionalmolybdenum disulfide film coating on nano zero valent iron surface (MoS2@nZVI),Collaboration of radical and non-radical pathways. Science of The total Environment.2024, 920, 170818
(14) Miao Yu, Xinyuan Lv, Ziqi Wang, Minghao Sui*.Twoneglected contributors to water biosafety risks: The impacts of microbialco-existence and light on viral inactivation. Journal of Water ProcessEngineering. 2024,67, 106241
(15) Ziqi Wang, Yingyue Huang, Miao Yu, Wei Zhuang,Minghao Sui*.Pre-exposure to peracetic acid followed by UV treatment fordeactivating vancomycin-resistant Enterococcus faecalis through intracellularattack. Environmental Research. 2024, 262,119780
(16) Qi Xingqi, Du Songhang, Sui Minghao*, GuoYali, Lv Yanning,Lv Xinyuan.Copper oxide combing with multi-walled carbon nanotubes activated peroxyaceticacid for the degradation of sulfamethoxazole. Journal of Water ProcessEngineering. 2024,60, 105139
(17) Yingyue Huang, Miao Yu, Ziqi Wang, MinghaoSui*.Polyethylene microplastics decreased the chlorine disinfection efficacy ofantibiotic resistant bacteria and antibiotic resistance genes. Journalof Water Process Engineering. 2024, 61, 105233
(18) Chundi Zhou, Minghao Sui*. OvercomingFe0/Cr(VI) redox-induced low electron transfer efficiency under neutral pH byiron-based dual active sites-mediated hydrogen atom activation. ChemicalEngineering Journal. 2024, 489, 151211
(19) Guo Yali, Sui Minghao*, Liu Shuan, Li Tian,Lv Xinyuan, Yu Miao, Mo Yaojun. Insight into cobalt substitution inLaFeO3-based catalyst for enhanced activation of peracetic acid, Reactivespecies and catalytic mechanism. Journal of Hazardous Materials.2023, 461, 132662
(20) Lv Xinyuan, Yu Miao, Guo Yali, Sui Minghao*.Efficient heterogeneous activation of peroxymonosulfate by Ag-doped CoFe2O4nanoparticles for sulfamethoxazole degradation. Journal of Environmental ChemicalEngineering. 2023, 11(5): 110980
(21) Mo Yaojun, Lv Xinyuan, Guo Yali, SuiMinghao*. Catechin-enhanced sulfamethoxazole degradation in Fe(II) activatedperacetic acid process: Efficiency, mechanism and affecting factors. Journalof Water Process Engineering. 2023,55, 104122
(22) Tian Yichen, Sui Minghao*, Lv Yanning, LvXinyuan. Reduced graphene oxide/graphitic carbon nitride composite forpiezocatalysis and piezocataytic activation of persulfate to degradesulfamethoxazole. Journal of Water Process Engineering. 2023, 53, 103771
(23) Yining Li, Minghao Su*. Peracetic Acid-BasedAdvanced Oxidation Processes and Its Applications in Water Disinfection. Processin Chemistry. 2023, 3, 1258-1265
(24) Miao Yu, Rui Gao, Xinyuan Lv, Minghao Sui*.Inactivationof phage phiX174 by UV254 and free chlorine: Structure impairment and functionloss. Journal of Environmental Management. 2023, 340, 117962
(25) Chundi Zhou, Minghao Sui*.Insights into theelectron activation mechanisms at the micro level by nano zero-valent ironsupported by molybdenum disulfide (nZVI@MD) from preparation to application. Journalof Hazardous Materials. 2023, 458,131968

文件上传中...