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张玲玲
2023-05-06 11:24
  • 张玲玲
  • 张玲玲 - 副教授-北京科技大学-能源与环境工程学院-个人资料

近期热点

资料介绍

个人简历


2003.09 - 2004.10 英国曼彻斯特理工大学,硕士 2004.10 - 2008.12 英国利兹大学,博士 2009.04 - 2013.09 北京科技大学土木与环境工程学院环境系,讲师 2013.09 - 2016.04 北京科技大学土木与环境工程学院环境系,副教授 2016.04 - 至今 北京科技大学能源与环境工程学院环境系,副教授

研究领域


环境功能材料、高级氧化技术、资源回收与利用、环境毒理等

近期论文


1. Zhang,L.L*, Jin, H., Ma,H.K., Gregory K.et al..Oxidative damage of antibiotic resistant E. Coli and gene in a novel sulfidated micro zero-valent acitvated persulfate system. [J]. Chemical Engineering Journal,2020, 381:122787.
2. Ma H, Zhang L.L.*, Huang X, et al. A novel three-dimensional galvanic cell enhanced Fe2+/persulfate system: High efficiency, mechanism and damaging effect of antibiotic resistant E. coli and genes [J]. Chemical Engineering Journal,2019, 362: 667-678.
3. Zhang,L.L*, Ma,H.K., Huang,X.M., et. al. Fast and efficient inactivation of antibiotic resistant Escherichia coli by iron electrode-activated sodium peroxydisulfate in a galvanic cell. Chemical Engineering Journal. 2019. 355: 150-158.
4. Zhang,L.L.*, Zhang,Z.X., He,X., Zheng,L., Cheng,S.K. and Li,Z.F. Diminished inhibitory impact of ZnO nanoparticles on anaerobic fermentation by the presence of TiO2 nanoparticles: Phenomenon and mechanism. Science and the Total Environment. 2019. 647:313-322.
5. Mukiza, E., Liu,X.M.*, Zhang,L.L*, Zhang, N. Preparation and characterization of a red mud-based road base material: Strength formation mechanism and leaching characteristics. Construction and Building Materials. 2019. 220:297 – 307.
6. Mukiza, E., Zhang,L.L*, Liu,X.M.*, Zhang, N. Utilization of red mud in road base and subgrade materials: A review. Resources, Conservation & Recycling. 2019, 14:187-199.
7. Zhang,L.L., Ding,W., Qiu,J.T, Jin,H., Ma,H.K., Li,Z.F. and Cang,D.Q. Modeling and optimization study on sulfamethoxazole degradation by electrochemically activated persulfate process. Journal of Cleaner Production. 2018. 197: 297-305.
8. Zhao,G.Z., Zhang,L.L* and Cang,D.Q. Pilot trial of detoxification of chromium slag in cyclone furnace and production of slag wool fibres. Journal of Hazardous Materials, 2018. 358: 122-128.
9. Yan,Z.X, Zhang,L.L.*, Zhao,Z.,Qi,H., Li,Y. And Cang,D.Q. Enhanced antimicrobial activity of ZnO nanofluids in sonophotocatalysis and its mechanism. Ultrasonics Sonochemistry, 2018. 47: 133-140.
10. Jiang,F., Zhang,L.L*, Mukiza,E., Qi,Z.W. and Cang,D.Q. Formation mechanism of high apparent porosity ceramics prepared from fly ash cenosphere. Journal of Alloys and Compounds, 2018. 749: 750-757.
11. Zhang,L.L., Qi, H., Yan, Z.X., Gu, Y., Sun, W.Q. and Zewde, A.A., Sonophotocatalytic inactivation of E. coli using ZnO nanofluids and its mechanism. Ultrasonics Sonochemistry, 2017.34: 232-238.
12. Wei, R.F., Zhang, L.L*., Cang, D.Q., Li, J.X., Li, X.W. and Xu, C.C. Current status and potential of biomass utilization in ferrous metallurgical industry. Renewable and sustainable energy reviews, 2017. 68: 511-524.
13. Zhang, L.L., Li, Y., Liu, X.M., Zhao, L.H., Ding, Y.L, Povey, M. and Cang, D.Q, The properties of ZnO nanofluids and the role of H2O2 in the disinfection activity against E. coli. Water Research, 2013. 47(12): 4013-4021.\

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