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个人简介

发布人:     发布日期:2026-01-16   浏览次数:

·姓名: 李想

·职称: 讲师

·邮箱: li_xiang@ahnu.edu.cn


◆主要学习工作经历

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1. 2012年9月~2016年6月东南大学本科,环境工程;

2. 2016年9月~2023年6月,东南大学博士,环境科学与工程,导师:吕锡武教授

3. 20237月至今,安徽师范大学生态与环境学院,讲师。


◆主要社会兼职

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Water ResearchCritical Reviews in Environmental Science and TechnologyScience of the total environmentJournal of Environmental Management等期刊审稿人


◆主要研究方向

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1. 污水处理与资源化

2. 污染物环境响应及迁移转化

3. 新污染物环境行为与风险


◆主要研究课题

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1.安徽师范大学高峰和奖补学科建设项目2023GFXK130污水磷回收过程重金属转化和归趋及产物生态风险评估研究,2023-12至2028-12,10万元,主持;

2.安徽省生态环境科技项目,2024hb004剩余污泥与含氟废水协同治理关键技术开发及减污降碳效果研究,2025-01至2026-12,30万元,参与

3.安徽省自然科学基金面上项目,缓释碳-氧化亚氮零释放脱氮菌强化尾水氧化亚氮减排的效能及机制2026-01至2028-12,8万元

4.江苏省生态环境科研项目,2021001,农村生活污水收集、资源化利用与智慧化运维技术集成研究及产业化应用,300万元,2022-01至2023-09,参

5.国家科技重大专项项目子课题,2017ZX07202-004-002,太滆运河高适应性村落生活污水处理技术集成与应用示范,402万元,2017-01至2020-06,参

6.江苏省太湖水污染防治科研项目,TH2016203,生活污水氮磷提标研究与示范(技术示范类),2016-08至2018-07,120万元,

7.国家科技重大专项项目,2012ZX07101-005,竺山湾农村分散式生活污水处理技术集成研究与工程示范,2012-01至2018-12,2300万元,

◆主要研究成果

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入职后发表论文

1.Li, X.; Han, M.; Shen, S.; Miao, Y.; Qi, L.; Wan, R.; Ye, L. Exposure to environmentally relevant concentrations of antibiotics increases N2O emissions and delays nitrate removal: New insights into bacteriostatic antibiotics at the cellular level. Environmental Science & Technology. 2026, 60(1): 642-653一区TOP)

2.Zhang, Y.; Li, X.; Gao, L.; Ye, P.; Wang, R.; Zhou, E.; Sun, T.; Xu, M.; Wan, R*.; Li, X**. Iron-Driven Synergism Among Microbial Functional Taxa Facilitates Recovery from Denitrification Toxicity. Journal of Environmental Management. 2026, 397, 128227. (二区TOP)

3.Li, X.; Hu, X.; Shen, S*.; Wan, R.; Dai, H.; Lu, X. Unravelling Key Factors Controlling Homogeneous Crystallization during Phosphorus Recovery: From the Perspective of Crystallization Kinetics. Journal of Cleaner Production. 2025, 490, 144782.(一区TOP)

4.Li, X.; Hu, X.; Shen, S.; Wan, R.; Ting, G.; Lu, X. New Insights into the Impact of Heavy Metals on Phosphorus Recovery: Interaction with the Phase Transition of CaP Precipitation. Journal of Environmental Chemical Engineering. 2025, 13 (6), 120121.(二区)

5.Shen, S.; Li, W.; Guo, T.; Wan, R.; Lu, X.; Dai, H.; Li, X*. Mechanistic Insights into Heavy Metal Adsorption on Hydroxyapatite: New Perspectives from Dynamic Adsorption Behavior. Journal of Environmental Chemical Engineering. 2025, 13 (5), 118855.(二区)

6.Shen, S.; Xie, L.; Wan, R.; Li, X*.; Lu, X.; Dai, H. Sediment Microbial Fuel Cell Coupled Floating Treatment Wetland for Enhancing Non-Reactive Phosphorus Removal. Chemosphere 2024, 358, 142142.(二区TOP)

博士研究生阶段发表论文:

1.Li, X.; Shen, S.; Fu, Z.; Dong, Y.; Dai, H.; Lu, X*. Achieving phosphorus recovery at pilot-scale anaerobic anoxic/nitrifying-induced crystallization (A(2)N-IC) process: Performance, assessment, and challenges. Chemosphere 2023;315:137768 (二区TOP)

2.Li, X.; Shen, S.; Xu, Y.; Guo, T.; Dai, H.; Lu, X*. Mining phosphorus from waste streams at wastewater treatment plants: a review of enrichment, extraction, and crystallization methods. Environmental Science and Pollution Research 2023;30:28407-28421 (三区)

3.Shen, S.#; Li, X#; Dai, Z.; Lu, X*. Floating treatment wetland integrated with sediment microbial fuel cell for low-strength surface water treatment, Journal of Cleaner Production, 2022, 374(6): 134002. (一区TOP)

4.Li, X.; Shen, S.; Xu, Y.; Guo, T.; Hongliang, D.; Lu, X*. Transformation and fate of non-reactive phosphorus (NRP) in enhanced biological phosphorus removal process with sidestream phosphorus recovery. Science of the Total Environment 2022;839:156275 (一区TOP)

5.Li, X.; Xu, Y.; Shen, S.; Guo, T.; Dai, H.; Lu, X*. Effects of dissolved organic matter on phosphorus recovery via hydroxyapatite crystallization: New insights based on induction time. Science of the Total Environment 2022;822:153618 (一区TOP)

6.Li, X.; Shen, S.; Xu, Y.; Guo, T.; Dai, H.; Lu, X*. Application of membrane separation processes in phosphorus recovery: A review. Science of the Total Environment 2021;767:144346 (一区TOP)