学术经历: 2021.12-至今,英国上市官网365,副教授 2018.07-2021.11,英国上市官网365,讲师 开设课程: 主要开设《化工原理》、《化工原理课程设计》以及《现代分离技术》等课程 研究方向:
1. 多孔电解质材料的制备与应用 2. 膜分离材料的制备与应用
获奖情况:
1)中国商业联合会科技进步三等奖,2024 2)英国上市官网365青年教师优秀学术论文一等奖,2020 3)英国上市官网365青年教师优秀学术论文二等奖,2019
主持项目: 1) 安徽省洁净催化工程研究中心开放课题:2D分子筛催化甘油制丙烯醛的性能研究(LCCE-202604),2026.4−2028.3,主持; 2) 安徽省高等公司自然科学研究重点项目:超薄分子筛膜的调控构筑及其生物乙醇脱水性能研究(KJ2021A0495),2021.1−2023.12,主持; 3) 安徽省教育厅洁净能源材料与催化物质转化化学重点实验室开放基金:杂多酸盐柱撑纳米薄层分子筛催化甘油制丙烯醛的研究(LCECSC-12),2020.1−2022.12,主持; 4) 英国上市官网365科研启动基金:抗结焦、高活性催化剂的制备(2018YQQ014),2018.10−2020.9,主持; 5) 英国上市官网365校级科研项目:纳米薄层分子筛诱导构筑高效氢分离超薄分子筛膜的研究(Xjky2020080),2021.1−2023.12,主持; 6) 横项项目:燃煤烟气脱硫脱硝关键技术研发及其产业化(HX-2026-01-023),2026.1-2026.9,主持; 7) 横项项目:环保高效保温墙体关键技术研发(HX-2023-11-047),2023.11-2024.11,主持。
代表性论文:
1. Jun-Bin Zhang, Qiang Liu, Wen-Yan Pan, Jia-Wen Wu, Xingyang Li, Meng Pan, Zhi-Sheng Shi, Chun-Liang Du, and Xue-Ling Wei*; Support-layer Integrated Zeolite Membranes Through In Situ Interfacial Transformation of Clay-based Protomembranes[J], Angewandte Chemie International Edition, 2025, 64(6): e202420696. 2. Xue-Ling Wei, Jun-Bin Zhang, Wen-Yan Pan, Bo Song, Yu-Ling Luo, Qiang Liu, Zhi-Sheng Shi, Xingyang Li*, ZongCheng Miao; Reusable saturated synthesis solutions for compact zeolite membranes[J], Microporous and Mesoporous Materials, 2024, 376: 113180. 3. Xue-Ling Wei, Bo Song, Yu-Ling Luo, Jun-Fang An, Jun-Bin Zhang, Meng Pan, Xingyang Li; Hydro-Solvothermal Synthesis of NaX Zeolite Membranes for the Separation of MeOH/Methyl tert-Butyl Ether Mixtures, Industrial & Engineering Chemistry Research, 2023, 63(33): 13107-13116 4. Wen-Jing Wang, Wen-Yan Pan, Xue-Ling Wei*, Bo Song, Yu-Ling Luo; Hetero-metal solution to construct high permselective zeolite membranes[J], Journal of Environmental Chemical Engineering, 2022, 10(6): 108984 5. Wen-Yan Pan, Liang-Liang Peng, Wen-Jing Wang and Xue-Ling Wei*; In situ constructed zeolite membranes on rough supports with the assistance of reticulated hydrotalcite interlayer[J], RSC Advances, 2021, 59(11): 37131-37137. 6. Xue-Ling Wei, Wen-Yan Pan, Xingyang Li, Meng Pan, Chao-Fei Huo, Renchun Yang, Zi-Sheng Chao*; MCM-22 zeolite-induced synthesis of thin sodalite zeolite membranes[J], Chemistry of Materials, 2020, 32(1): 333-340. 7. Xue-Ling Wei, Wen-Yan Pan, Meng Pan, Liang-Liang Peng, Chao-Qun Niu, Zi-Sheng Chao*; Effects of bubbles on the structure and performance of zeolite membranes[J], Journal of the European Ceramic Society, 2020, 40(4): 1709-1716. 8. Xue-Ling Wei, Na Li, Jun-Fang An, Huan Liu, Ren-Chun Yang, Xing-Yang Li, Zi-Sheng Chao*; Synthesis of superhydrophobic flower-like ZnO on nickel foam[J], CrystEngComm, 2020, 22(2): 205-212. 9. Xue-Ling Wei, Huan Liu, Yao-Yi Xu, Ya-Li Sun and Zi-Sheng Chao*; Synthesis of NaA zeolite membrane by maintaining pressure difference between the two sides of the support[J], CrystEngComm, 2018, 20, 7195-7205. 10. Yao-Yi Xu#, Xue-Ling Wei#, Shuai Liang, Ya-Li Sun and Zi-Sheng Chao*; Synthesis of a ZSM-5/NaA hybrid zeolite membrane using kaolin as a modification layer[J], New Journal of Chemistry, 2018, 42, 6664-6672. 11. Xue-Ling Wei, Shuai Liang, Yao-Yi Xu and Zi-Sheng Chao*; Patching NaA zeolite membrane by adding methylcellulose into the synthesis gel[J], Journal of Membrane Science, 2017, 530: 240-249. 12. Xue-Ling Wei#, Na Li#, Wen-Jun Yi, Li-Jun Li and Zi-Sheng Chao*; High performance super-hydrophobic porous ceramic coating with flower-like CeO2 micro/nano-structure[J], Surface and Coating Technology, 2017, 325: 565-571. 13. Xue-Ling Wei, Shuai Liang, Yao-Yi Xu and Zi-Sheng Chao*; Methylcellulose-assisted synthesis of a compact and thin NaA zeolite membrane[J], RSC Advances, 2016, 6(76): 71863-71866. 14. 魏学岭;潘文燕;张峻彬;宋贤丽;刘强;蔡正鸿;吴佳雯. 黏土制备的载体-膜层一体化分子筛膜及其制备方法和应用,2025-7-25,中国专利ZL202410915367.X。 15. 魏学岭;潘文燕;潘梦;石志盛;宋博;罗玉玲;张峻彬. 水-有机溶剂热制备高效分离分子筛膜的方法、高效分离分子筛膜及应用,2025-5-27,中国专利ZL202310057661.7。 16. 魏学岭;潘文燕;宋贤丽;张峻彬;刘强;潘梦;李兴扬;吴佳雯.一种非溶剂制备分子筛膜且取向调控的方法,2025-2-25,中国专利ZL202411083898.3。 17. 魏学岭;王文静;潘梦;石志盛;蒯龙;李兴扬;李圆圆. 分子筛膜及其制备方法和应用, 2024-1-26,中国专利ZL202110896934.8。 18. 魏学岭; 晁自胜; 潘文燕; 陈曦; 胡悦 ; 一种在管状多孔载体内壁生长致密无缺陷分子筛膜的方法, 2021-4-20, 中国专利, ZL201811189917.5。
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