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杨林燕
发布时间:2019-02-22   访问次数:10207

杨林燕,副教授,环境工程系副主任

联系方式:
地址:上海市梅陇路130号,金沙
电话: /
Email
lyyang@ecust.edu.cn

个人简介:

杨林燕,女,博士,任职于金沙集团1862cc成色,现任副教授、环境工程系副主任、硕士生导师。专注于复杂水体污染控制理论与技术方面的研究,包括复杂水质环境下纳滤和反渗透膜微污染物控制规律和损伤机理、高有机物含量废水中痕量抗生素和激素类物质的去除技术与机理、高盐高毒性复杂体系化工废水的梯度处理技术开发与工艺优化等。在Environmental Science & TechnologyWater ResearchChemical Engineering Journal等权威期刊累计发表学术论文四十余篇,JCR 1区期刊论文占比约80%,申请国内发明专利6项、国际专利1项,授权国内发明专利2项,荣获金沙青年英才培育计划(A类)和金沙集团1862cc成色优秀青年教师(科研类)荣誉称号。

研究方向:

  1. 杂水质环境下纳滤和反渗透膜微污染物控制规律和损伤机理

  2. 高有机物含量废水中痕量抗生素和激素类物质的去除技术与机理

  3. 盐高毒性复杂体系化工废水的梯度处理技术开发与工艺优化

主要经历:

  1. 2023.01-至今,金沙,金沙集团1862cc成色,副教授

  2. 2018.04-2022.12,金沙,金沙集团1862cc成色,讲师

  3. 2014.05-2014.08,德国图宾根大学,访问学生

  4. 2013.08-2017.08,新加坡南洋理工大学,环境工程,博士

  5. 2012.11-2013.08,新加坡南洋理工大学,研究助理

  6. 2007.09-2011.06,河海大学,给排水工程,学士

教学情况:

  1. 废水治理理论与现代技术

  2. 环境工程实验

  3. 环境科学与工程概论

  4. 毕业论文(设计)

学术兼职:

/

各类荣誉及获奖:

  1. 2013年,新加坡政府授予“全额博士奖学金”

  2. 2014年,德国政府授予“Baden-Württemberg Stipendium奖学金”

  3. 2018,金沙集团1862cc成色青年教师授课大赛二等奖

  4. 2019年,金沙集团1862cc成色青年教师授课大赛二等奖

  5. 2020年,金沙集团1862cc成色优秀青年教师

  6. 2020年,金沙青年英才培育计划(A类)

  7. 2021年,全国石油和化工教育优秀教学团队

承担课题:

  1. 国家自然科学基金青年项目,聚酰胺膜消毒损伤机制及其诱导的水处理效应研究,521000852022/01-2024/12,主持。

  2. 上海市自然科学基金面上项目,膜法去除泳池水中高浓度高毒性污染物的基质效应及损伤机理研究,19ZR14128002019/07-2022/06,主持。

近年代表性论文:


  1. Zhao, H., Yang, L.*, Chen, X., Sheng, M., Cao, G., Cai, L., Meng, S. and Tang, C.Y., 2021. Degradation of polyamide nanofiltration membranes by bromine: changes of physiochemical properties and filtration performance. Environmental Science & Technology 55(9), 6329-6339.

  2. Chen, X.*, Yang, L., Sun, J., Wei, W., Liu, Y. and Ni, B.-J.*, 2020. Influences of longitudinal heterogeneity on nitrous oxide production from membrane-aerated biofilm reactor: a modeling perspective. Environmental Science & Technology54(17), 10964-10973.

  3. Yang, L., Schmalz, C., Zhou, J., Zwiener, C., Chang, V.W.C.*, Ge, L., Wan, M.P., 2016. An insight of disinfection by-product (DBP) formation by alternative disinfectants for swimming pool disinfection under tropical conditions. Water Research 101, 535-546.

  4. Yang, L., She, Q., Wan, M.P., Wang, R., Chang, V.W.C.*, Tang, C.Y.*, 2017. Removal of haloacetic acids from swimming pool water by reverse osmosis and nanofiltration. Water Research 116, 116-125.

  5. Yang, L., Zhou, J., She, Q., Wan, M.P., Wang, R., Chang, V.W.C.*, Tang, C.Y.*, 2017. Role of calcium ions on the removal of haloacetic acids from swimming pool water by nanofiltration: mechanisms and implications. Water Research 110, 332-341.

  6. Chen, X., Li, F., Huo, P., Liu, J., Yang, L., Li, X., Wei, W. and Ni, B.-J., 2022. Influences of longitudinal gradients on methane-driven membrane biofilm reactor for complete nitrogen removal: A model-based investigation. Water Research 220, 118665.

  7. Yang, L., Chen, X., She, Q., Cao, G., Liu, Y., Chang, V.W.C.*, Tang, C.Y.*, 2018. Regulation, formation, exposure, and treatment of disinfection by-products (DBPs) in swimming pool waters: a critical review. Environment International 121, 1039-1057.

  8. Xie, Y., Yang, L.*, Chen, X., Zhao, H., Cao, G., Li, X., Bai, L., Meng, S. and Wang, R., 2022. The role of iron present in water environment in degradation of polyamide membranes by free chlorine. Journal of Membrane Science 651, 120458.

  9. Zhao, H., Yang, L.*, Chen, X., Wang, J., Bai, L., Cao, G., Cai, L. and Tang, C.Y., 2023. Reactivity of various brominating agents toward polyamide nanofiltration membranes. Separation and Purification Technology 305, 122490.

  10. Yang, L.*, X. Liang, Y. Han, Y. Cai, H. Zhao, M. Sheng, and G. Cao*., 2019. The coupling use of advanced oxidation processes and sequencing batch reactor to reduce nitrification inhibition of industry wastewater: Characterization and optimization. Chemical Engineering Journal 360, 1577-1586.

  11. Zhao, H., Yang, L.*, Chen, X., Cai, L.*, Li, Y., Sheng, M., Cao, G. and She, Q. (2021) Magnesium-Induced Variation of Polyamide Membrane Behavior for the Treatment of Haloacetic Acids in Swimming Pool Waters. ACS ES&T Water 1(2), 346-355





网页发布时间: 2019-02-22
 
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