徐云兰 教授

时间:2021-04-20

作者:周柳英

个人简介:徐云兰,女,1971年9月出生。硕士生导师。主持国家自然基金2项,省部级及企业委托项目5项,共发表科研论文100余篇,其中SCI及EI收录70余篇;授权国家发明专利9项;主编专著1部。

职称/职务:教授

学历/学位:博士研究生

联系方式:xuyunlan@cqut.edu.cn

学习工作经历:

1996.9-1999.7重庆大学化工学院 物理化学 硕士

2006.3-2009.2上海交通大学 环境科学与工程 博士

2009.6- 重庆理工大学 化学化工学院 教师

承担课程:物理化学及实验、水污染控制工程

研究领域:环境功能材料、电化学、水污染控制技术

科研项目

[1] 国家自然科学基金面上项目“微生物燃料电池(MFC)产电辅助双极斜板液膜液膜反应器光电催化降解染料废水的研究”(No. 21077140)项目主持人

[2] 国家自然科学基金重点项目“高效光吸收光(电)催化转盘结构与降解染料性能的构效关系研究” (No. 20937003)  子项目主持人

[3] 重庆市教委科学技术项目“光生电子自发定向转移高效低耗光催化液膜反应器处理染料废水的研究”(No. KJ100813) 项目主持人

[4] 重庆市科委自然科学基金项目“双极氧化光催化法处理难降解有机物的研究” (No.cstc2011jjA20003)项目主持人

[5] 城镇污水处理技术开发,企业委托项目,项目主持人

[6] 黑臭水体治理技术开发,企业委托项目,项目主持人

[7] 污水处理厂除磷工艺技术开发,企业委托项目,项目主持人

代表性论文:

[1] Zeng Y.D., Xu Y.L.*, Zhong D.J., Yao H.Y., Zhong N.B. Peroxymonosulfate activated by photocatalytic fuel cell with g-C3N4/BiOI/Ti photoanode to enhance rhodamine B degradation and electricity generation, Journal of Hazardous Materials, 2022, 425,127967.

[2] Xu C.Z., Xu Y.L.*, Zhong D.J., Chang H.X., Mou J.X., Wang H., Shen H.Y. Zr4+ cross-linked chitosan-thiourea composite for efficient detoxification of Cr(VI) ions in aqueous solution, Carbohydrate Polymers. 2022, 296, 119872.

[3] Xu C.Z., Xu Y.L.*, Zhong D.J., Chang H.X., Mou J.X., Wang H., Shen H.Y. Zr4+ and glutaraldehyde cross-linked polyethyleneimine functionalized chitosan composite: Synthesis, characterization, Cr(VI) adsorption performance, mechanism and regeneration. International Journal of Biological Macromolecules. 2023, 239, 124266.

[4] Zhong D.J., Liao X.R., Liu Y.Q., Zhong N.B., Xu Y.L.* Quick start-up and performance of microbial fuel cell enhanced with a polydiallyldimethylammonium chloride modied carbon felt anode. Biosensors and Bioelectronics, 2018, 119:70-78.

[5] Zhong D.J., Liao X.R., Liu Y.Q., Zhong N.B., Xu Y.L.* Enhanced electricity generation performance and dye wastewater degradation of microbial fuel cell by using a petaline NiO@ polyanilinecarbon felt anode. Bioresource Technology, 2018, 258: 125-134.

[6] Xu Y.L., He Y., Jia J.P., Zhong D.J.,Wang Y.L. Cu-TiO2/Ti dual rotating disk photocatalytic (PC) reactor:dual electrode degradation facilitated by spontaneous electron transfer. Environmental Science & Technology, 2009, 43(16):6289-6294.

[7] Xu Y.L., He Y., Cao X.D., Zhong D.J., Jia J.P. TiO2/Ti rotating disk photoelectrocatalytic (PEC) reactor: a combination of highly effective thin film PEC and conventional PEC process on a single electrode. Environmental Science & Technology, 2008, 42(7): 2612-2617.

[8] Xu Y.L., Jia J.P., Zhong D.J., Wang Y.L. Degradation of dye wastewater in a thin-film phtotoelectrocatalytic (PEC) reactor with slant-placed TiO2/Ti anode. Chemical Engineering Journal, 2009, 150(2-3): 302-307.

[9] Xu Y.L., Zhong D.J., Jia J.P., Li K., LiJ.X., Quan X.J. Dual slant-placed electrodes thin-film photocatalytic reactor: Enhanced dye degradation efficiency by self-generated electric field. Chemical Engineering Journal, 2013, 225:138-143.

[10] Wang W.Y., Xu Y.L.*, Zhong D.J., Zhong N.B. Electron utilization efficiency of ZVI core activating PMS enhanced by C-N/g-C3N4 shell. Applied Catalysis A, General. 2020, 608,117828.

[11] Dong L., Xu Y.L.*, Zhong D.J., Chang H.X., Li J., Liu Y., Han Z.F. Polyaniline/g-C3N4/Bi2O3/Ti photoanode for visible light responsive photocatalytic fuel cell degradation of rhodamine B and electricity generation. Chemosphere. 2023,325,138399.

[12] Xu C.Z., Xu Y.L.*, Zhong D.J., Chang H.X., Mou J.X., Wang H., Shen H.Y. Efficient adsorption and reduction of Cr(VI) by Zr4+ cross-linked magnetic chitosan/polyaniline composite, Journal of Environmental Chemical Engineering. 2022,10,108977.

[13] Li L.C., Xu Y.L.*, Zhong D.J., Zhong N.B. CTAB-surface-functionalized magnetic MOF@MOF composite adsorbent for Cr(VI) efficient removal from aqueous solution. Colloids and Surfaces A. 2020, 586, 124255.

[14] Liu Y.Q., Xu Y.L.*, Zhong D.J., Yao H.Y., Zeng Y.D., Zhong N.B. BiVO4@PDA/TiO2/Ti photoanode with polydopamine as electron transfer mediator for efficient visible-light driven photocatalytic fuel cell. Colloids and Surfaces A. 2021, 612,125941.

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