当前位置: X-MOL首页全球导师 国内导师 › 甘丽娜

个人简介

甘丽娜职称:讲师 所在院系:上海理工大学环境与建筑学院,环境科学与工程系 通讯地址:上海市军工路516号上海理工大学环境与建筑学院109室(200093) 教育背景: 2012.09-2016.09 中国科学院过程工程研究所 化学工艺 博士 2010.09-2012.06 北京科技大学 材料学 硕士 2006.09-2010.06 武汉科技大学 无机非金属材料工程 学士 工作经历: 2019.09-至今上海理工大学环境与建筑学院 讲师 2016.09-2019.08 清华大学环境学院 博士后 参与科研项目: 1、大气污染防治新技术和新模式的应用示范研究,2015-2018,生态环境部公益性行业科研专项(201509021),主要负责人。 2、低温Mn基催化剂协同控制NOx和CVOCs的机理研究,2017-2019,中国博士后科学基金面上资助项目(2017M620798),主持。 3、建材行业多污染物协同高效控制技术研发及工程示范,2017-2020,国家重点研发项目(2017YFC0210704),主要研究人员。 4、“一带一路”生态环境保护研究,2017-2019,中国工程院,主要研究人员。

研究领域

大气污染控制、环境功能材料开发

大气污染控制、环境功能材料开发

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. Lina Gan, Yu Wang, Jianjun Chen, Tao Yan, Junhua Li, John Crittenden and Yue Peng. The synergetic mechanism of NOx and chlorobenzene degradation in municipal solid waste incinerators. Catalysis Science & Technology, 2019, 9, 4286-4292. (IF = 5.726) 2. Lina Gan, Wenbo Shi, Kezhi Li, Jianjun Chen, Yue Peng, Junhua Li. Synergistic promotion effect between NOx and chlorobenzene removal on MnOx-CeO2 catalyst. ACS Applied Materials & Interfaces, 2018, 10, 30426-30432. (IF = 8.456) 3. Lina Gan, Kezhi Li, Shangchao Xiong, Yani Zhang, Jianjun Chen, Yue Peng, Junhua Li. MnOx-CeO2 catalysts for effective NOx reduction in the presence of chlorobenzene. Catalysis Communications, 2018, 117, 1-4. (IF = 3.674) 4. Lina Gan, Jianjun Chen, Yue Peng, Jian Yu, Tuyetsuong Tran, Kezhi Li, Dong Wang, Guangwen Xu and Junhua Li. NOx removal over V2O5/WO3-TiO2 prepared by a grinding method: influence of the vanadium precursor on the V dispersion and catalytic behavior. Industrial & Engineering Chemistry Research, 2018, 57, 150-157. (IF = 3.375) 5. Lina Gan, Feng Guo, Jian Yu, Guangwen Xu, Improved low-temperature activity of V2O5-WO3/TiO2 for denitration using different vanadium precursors, Catalysts, 2016, 6, 25. (IF = 3.444) 6. Lina Gan, Shan Lei, Jian Yu, Hongtao Ma, Yo Yamamoto, Yoshizo Suzuki, Guangwen Xu, Zhanguo Zhang, Development of highly active coated monolith SCR catalyst with strong abrasion resistance for low-temperature application, Frontiers of Environmental Science & Engineering, 2015, 9, 979-987. (IF = 3.883) 7. Dong Wang, Yue Peng, Shang-chao Xiong, Bing Li, Li-na Gan, Chun-mei Lu, Jian-jun Chen, Yong-liang Ma, Jun-hua Li. De-reducibility mechanism of titanium on maghemite catalysts for the SCR reaction: An in situ DRIFTS and quantitative kinetics study. Applied Catalysis B: Environmental,2018, 221, 556-564. (IF = 14.229) 8. Weinan Yang, Shumo Wang, Kezhi Li, Shuai Liu, Lina Gan, Yue Peng, Junhua Li. Highly selective alpha-Mn2O3 catalyst for cGPF soot oxidation: Surface activated oxygen enhancement via selective dissolution. Chemical Engineering Journal,2019, 364, 448-451. (IF = 8.355) 9. Jingjing Guo, Weinan Yang, Yani Zhang, Lina Gan, Chi Fan, Jianjun Chen, Yue Peng, Junhua Li. A multiple-active-site Cu/SSZ-13 for NH3-SCO: Influence of Si/Al ratio on the catalytic performance. Catalysis Communications, 2019,105751. (IF = 3.674) 10. Jingjing Guo, Yue Peng, Yani Zhang,Weinan Yang, Lina Gan, Kezhi Li, Jianjun Chen, Junhua Li. Comparison of NH3-SCO performance over CuOx/H-SSZ-13 and CuOx/H-SAPO-34 catalysts, Applied Catalysis A: General, 2019, 585, 117119. (IF = 4.63) 11. Dong Wang, Qilei Yang, Xiansheng Li, Yue Peng, Bing Li, Wenzhe Si, Chunmei Lu, Li-na Gan. Preparation of gamma-Fe2O3 catalysts and their deNO(x) performance: Effects of precipitation conditions. Chemical Engineering & Technology, 2018, 41, 1019-1026 (IF = 2.418) 12. Lina Gan. Understanding Synergism of NOx and Chlorobenzene Removal on MnOx-CeO2 Catalyst: Passivation and Improvement. 26th biennial North American Meeting of the North American Catalysis Society, Chicago, USA, 2019. 13. Lina Gan. The diversity behaviors of MnOx-CeO2 catalysts for NOx removal in the presence of chlorobenzene. International Symposium on Advancement and Prospect of Catalysis Science & Technology, Sydney, Australia, 2018. 14. 甘丽娜等. MnOx-CeO2协同控制NOx和氯苯:NOx还原与氯苯氧化新协同效应.第十一届全国环境催化与环境材料学术会议,沈阳,2018. 15. 甘丽娜等.V2O5/TiO2协同控制NO和CVOCs:钒前驱体对钒物种及催化性能的影响.第十八届全国催化学术会议,天津,2017.

推荐链接
down
wechat
bug