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肖倩,现任同济大学环境科学与工程学院长聘副教授/特聘研究员,硕士/博士生导师,国家高层次青年人才。在国家自然科学基金优秀青年科学基金项目(海外)、国家自然科学基金青年科学基金项目、上海市领军人才(海外)青年项目等支持下,聚焦纳米材料水处理中新污染物高效还原与贵金属资源回收机制与调控原理的关键科学问题开展系统研究。近年来,在 Nature Sustainability、Nature Water、Nature Communications、Environmental Science & Technology等国际顶级期刊发表SCI论文20余篇;累计参加学术会议将近20场;多次参与组织国内外学术会议;曾获各类学术奖励10余项。担任北美华人环境工程与科学教授学会(CAPEES)编辑会员、国际期刊Green Energy and Resources与《净水技术》青年编委等。
教育经历
2015~2021 同济大学 市政工程 博士
2018~2020 (美)莱斯大学 土木与环境工程 联合培养
2011~2015 重庆大学 给排水科学与工程 学士
工作经历
2025~至今 同济大学 市政工程 助理教授/特聘研究员
2021~2025 香港大学 土木工程 博士后
欢迎给排水、环境、化学、材料和计算机等相关专业背景学生报考硕士和博士研究生!一起打怪升级。(注意:报考时要选市政工程专业)
(1)国家自然科学基金青年科学基金,电催化还原膜的限域反应强化机制与高氯酸盐深度脱除方法研究,2026/01-2028/12;主持
(2)上海市领军人才(海外)青年项目,限域还原用于海水制氢,2024/01-2026/12;主持
(3)参与多项国际国内重大课题,包括香港特别行政区研究资助局(RGC)项目、美国自然科学基金(NSF)项目、美国能源部(DOE)项目和国家重大专项计划等
(1) Qian Xiao, et al., Ultrafast complete dechlorination enabled by ferrous oxide/graphene oxide catalytic membranes via nanoconfinement advanced reduction, Nature Communications, 2024, 15, 9607 (IF 14.7).
(2) Qimao Gan, Wenyu Liu, Qian Xiao, et al., Plasmonic nanoheating for versatile water purification membranes, Nature Sustainability, 2025, 8, 1190–1198 (IF 27.1).
(3) Qian Xiao, et al., Iron Nanoparticles-Confined Graphene Oxide Membranes Coupled with Sulfite-Based Advanced Reduction Processes for Highly Efficient and Stable Removal of Bromate, Environmental Science & Technology, 2024 58, 18009−18019 (IF 10.8).
(4) Qian Xiao, et al., Degradation of bromate by Fe (II) Ti (IV) layered double hydroxides nanoparticles under ultraviolet light, Water Research, 2019, 150 (IF 11.4).
(5) Qian Xiao, et al., Influence of UV lamp, sulfur(IV) concentration, and pH on bromate degradation in UV/sulfite systems: Mechanisms and applications, Water Research, 2017, 111 (IF 11.4).
(6) Qian Xiao, et al., Membrane Capacitive Deionization (MCDI) for Selective Ion Separation and Recovery: Fundamentals, Challenges, and Opportunities, Journal of Membrane Science, 2024, 699 (IF 8.4).
(7) Qian Xiao, et al., Reduction of bromate from drinking water by sulfite/ferric ion systems: Efficacy and mechanisms, Journal of Hazardous Materials, 2021, 418 (IF 12.2).
(8) Qian Xiao, et al., An overview of advanced reduction processes for bromate removal from drinking water: Reducing agents, activation methods, applications and mechanisms, Journal of Hazardous Materials, 2017, 324 (IF 12.2).
(9) Qian Xiao, et al., Selective reduction of chlorite to chloride in drinking water by UV/sulfite system: pathways, mechanisms, and kinetics, Chemical Engineering Journal, 2024, 485 (IF 13.3).
(10) Qian Xiao, et al., The role of dissolved oxygen in the sulfite/divalent transition metal ion system: degradation performances and mechanisms, Chemical Engineering Journal, 2021, 417 (IF 13.3).
(11) Qian Xiao, et al., Pilot study on bromate reduction from drinking water by UV/sulfite systems: Economic cost comparisons, effects of environmental parameters and mechanisms, Chemical Engineering Journal, 2017, 330 (IF 13.3).
(12) Xingli Ji, Shuili Yu*, Qian Xiao*, et al., Fast complete reduction of chlorite to chloride from drinking water in Al(III)/sulfite system: Kinetics, mechanisms, and applications, Chemical Engineering Journal, 2025, 504 (IF 13.3).
(13) Zhiyuan Shi, Jun Nan*, Qian Xiao*, et al., The effect of multivalent anions on the removal of titanium dioxide nanoparticles from drinking water sources by coagulation-sedimentation processes: efficiency and mechanisms, Separation and Purification Technology, 2022 (IF 8.1).

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