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副教授

研究领域:以元素转化与材料合成为核心,重点开展“场地土壤修复与风险防控;工业固废处理;面向废物废水资源化的环境材料设计”等领域的研究

主讲课程: 本科生课程:《固体废物处理处置》《环境修复工程》等;研究生课程:《环境材料学》等

电子邮箱: lilei503@126.com

教育及工作经历                                                      

2019.3-至今    西南大学,bat365中文官方网站,副教授,硕导

2020.5-2021.5  重庆市科学技术局,基础研究处,挂职

2018.1-2019.3  中国环境科学研究院,土壤与固体废物研究所,助理研究员

2013.9-2018.1  清华大学,环境学院,工学博士

2016.10-2017.8  北海道大学 (日本),工学院,联合培养博士生

2009.9-2012.3  华中科技大学,环境学院,工学硕士

2005.9-2009.6  华中科技大学,材料科学与工程学院,工学学士

学术任职                            

巴塞尔公约亚太区域中心化学品和废物环境管理智库专家,2021-2026

获奖荣誉

湖北省优秀硕士论文,2013

主持科研项目                                                      

1.亚铁离子诱导土壤铬磁性转化与提取修复的机理研究,国家自然科学基金青年基金项目,2021.1.1-2023.12.31,在研,主持

2.铬污染场地土壤铬磁性转化与分离的机理研究,重庆市自然科学基金面上项目,2020.7.1-2023.6.30,在研,主持

3.基于腐殖质和水滑石的多功能复合吸附剂的合成与应用,西南大学引进人才启动项目,2019.4-2021.12,在研,主持

4.制革类、铬化工类和电镀类场地污染土壤风险管控与修复技术,国家重点研发计划-场地土壤污染成因与治理技术专项,2018.12-2022.11,在研,参加

5.会理县铜矿废渣填埋场风险评估及土壤污染调查与数据统计,中国环境科学研究院委托项目,2019.5-2019.10,已结题,主持

代表性论文                                                    

[1]Ziyi Cheng, JingYang,Lei Li*,Yucheng Chen, Xingrun Wang. Flocculation inspired combination of layered double hydroxides and fulvic acid to form a novel composite adsorbent for the simultaneous adsorption of anionic dye and heavy metals. Journal of Colloid and Interface Science, 2022, 618:386-398. (IF=8.128, JCR分类SCI一区)

[2]Jing Yang, Ruixue Wang, Ziyi Cheng, Yucheng Chen, Lei Li* and Xingrun Wang. Removal and recycling of Cr(VI) from alkaline wastewater via a new ferrite process to produce the valuable chromium ferrite. Journal of Colloid and Interface Science, 2022, 608:3059-3068. (IF=8.128, JCR分类SCI一区)

[3]Xingrun Wang, Lei Li*, Xianghua Yan, Xiaoguang Meng and Yucheng Chen. Processes of chromium (VI) migration and transformation in chromate production site: A case study from the middle of China. Chemosphere, 2020, 257: 127282. (IF=7.086, JCR分类SCI一区)

[4]Lei Li*, ChaoYuan, Bangda Wang, XingrunWang, Yucheng Chen. Abiotic humification of phenolic pollutant to form a hybrid adsorbent for toxic metals by LDH based composite. Applied Clay Science, 2019, 175: 139-149. (IF=5.467, JCR分类SCI一区)

[5]Lei Li, Guangxia Qi, Bangda Wang, Dongbei Yue, Yi Wang*, Tsutomu Sato*. Fulvic acid anchored layered double hydroxides: a multifunctional composite adsorbent for the removal of anionic dye and toxic metal. Journal of Hazardous Materials, 2018, 343: 19-28. (IF=10.588, JCR分类SCI一区)

[6]Lei Li, Guangxia Qi, Masami Fukushima, Bangda Wang, Hui Xu, Yi Wang*. Insight into the preparation of Fe3O4 nanoparticle pillared layered double hydroxides composite via thermal decomposition and reconstruction. Applied Clay Science, 2017, 140: 88-95. (IF=5.467, JCR分类SCI一区)

[7]Lei Li, Guangxia Qi, Chao Yuan, Yinglong Sun, Xuefei Lei, Hui Xu and Yi Wang*. Comment on ‘‘Environmentally responsible fabrication of efficient perovskite solar cells from recycled car batteries’’. Energy & Environmental Science, 2015, 8, 1616. (IF=38.532, Comment, JCR分类Top期刊)

[8]Lei Li, Yuchen Hu, Xinfeng Zhu, Danni Yang, Qin Wang, Jianwen Liu, R. Vasant Kumar, Jiakuan Yang*. Lead citrate precursor route to synthesize nanostructural lead oxide from spent lead acid battery paste. Materials Research Bulletin, 2013, 48(4): 1700-1708. (IF=4.641, JCR分类SCI二区)

[9]Lei Li, Xinfeng Zhu, Danni Yang, Linxia Gao, Jianwen Liu, R. Vasant Kumar, Jiakuan Yang*. Preparation and characterization of nano-structured lead oxide from spent lead acid battery paste. Journal of Hazardous Materials, 2012, 203-204: 274-282. (IF=10.588, JCR分类SCI一区)

[10]Xinfeng Zhu, Lei Li, Jiakuan Yang*, et al. Preparation of basic lead oxide from spent lead acid battery paste via chemical conversion. Hydrometallurgy, 2012, 117-118: 24-31. (IF=4.156, JCR分类SCI一区)

[11]Bangda Wang, Yuexi Zhou, Lei Li, et al. Novel synthesis of cyano-functionalized mesoporous silica nanospheres (MSN) from coal fly ash for removal of toxic metals from wastewater. Journal of Hazardous Materials, 2018, 345: 76-86. (IF=10.588, JCR分类SCI一区)

[12]Bangda Wang, Yuexi Zhou, Lei Li, et al. Preparation of amidoxime-functionalized mesoporous silica nanospheres (ami-MSN) from coal fly ash for the removal of U(VI). Science of The Total Environment, 2018, 626: 219-227. (IF=7.963, JCR分类SCI一区)

[13]Guangxia Qi, Xuefei Lei, Lei Li, et al. Preparation and evaluation of a mesoporous calcium-silicate material(MCSM) from coal fly ash for removal of Co(II) from wastewater, Chemical Engineering Journal, 2015, 279: 777-787. (IF=13.273, JCR分类SCI一区)

[14]Lei Li, Guangxia Qi, Yi Wang. Synthesis of humic-like substances intercalated layered double hydroxides nanocomposite via in-situ abiotic humification. 18th International Conference of International Humic Substances Society, Kanazawa, Japan, September 11-16, 2016. (国际会议论文)

[15]王兴润, 李磊*, 颜湘华, 田永强. 铬污染场地修复技术进展. 环境工程, 2020, 38(06): 1-8. (北大核心CSCD,2020-2021高被引用论文)

[16]李磊, 袁光钰. 中国城市生活垃圾处理现状及展望 (约稿), 世界环境, 2017, 6: 24-27.

专利:

[1]王毅, 王邦达, 李磊. 一种由粉煤灰制备钛掺杂介孔二氧化硅纳米材料的方法, 中国发明专利, ZL201611073724.4

[2]王毅, 文洪涛, 雷雪飞, 刘灵欧, 孙应龙, 袁超, 李磊. 生产氧化铝的方法, 中国发明专利, ZL201410182895.5

[3]祁光霞, 王毅, 雷雪飞, 袁超, 孙应龙, 李磊. 还原-Fenton氧化耦合处理偶氮印染废水的方法, 中国发明专利, ZL201310732911.9


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