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个人简介

江苏徐州师范学院化学系理学学士(1983/9---1987年/7); 江苏省侯集中学教师(1987/8---1989/8); 西安西北大学化学系理学硕士(1989/9---1992/7); 陕西理工学院化学系教师(1992/8 ---1994/1); 北京中国科学院生态环境研究中心理学博士(方向:环境化学)(1994/2 ---1997/6); 中国人民大学商品学系→环境学院→化学系教师(1997/7---现在),1999/6评为副教授。在此期间的2004/8---2006/8,在瑞士Swiss Federal Institute of Technology in Lausanne化学系工作,访问学者;2009/8---2009/11,在德国University of Hannover化学系工作,访问学者

研究领域

1、新型光催化剂的研制和表征 2、化学/环境化学领域感兴趣的方向

近期论文

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[1] Yu Zhiyong, Lioubov Kiwi-Minsker, Albert Renken, John Kiwi*. Detoxification of diluted azo-dyes at biocompatible pH with the oxone/Co2+ reagent in dark and light processes. Journal of Molecular Catalysis A. 2006, 252: 113-119. [2] Yu Zhiyong, E. Mielczarski, J.A. Mielczarski, D. Laub, L. Kiwi-Minsker, A. Renken, J. Kiwi*. Stabilization mechanism of TiO2 on flexible fluorocarbon films as a functional photocatalyst. Journal of Molecular Catalysis A. 2006, 260: 227-234. [3] Yu Zhiyong, M. Bensimon, D. Laub, L. Kiwi-Minsker, W. Jardim, E. Mielczarski, J. Mielczarski, J. Kiwi*. Accelerated photodegradation (minute range) of the commercial azo-dye Orange II mediated by Co3O4/Raschig rings in the presence of oxone. Journal of Molecular Catalysis A. 2007, 272: 11-19. [4] Yu Zhiyong, M. Bensimon, V. Sarria, I. Stolitchnov, W. Jardim, D. Laub, E. Mielczarski, J. Mielczarski, L. Kiwi-Minsker, J. Kiwi*. ZnSO4–TiO2 doped catalyst with higher activity in photocatalytic processes. Applied Catalysis B. 2007, 76: 185-195. [5] Yu Zhiyong, E. Mielczarski, J. Mielczarski, D. Laub, Ph. Buffat, U. Klehm, P. Albers, K. Lee, A. Kulik, L. Kiwi-Minsker, A. Renken, J. Kiwi*. Preparation, stabilization and characterization of TiO2 on thin polyethylene films (LDPE). Photocatalytic applications. Water Research. 2007, 41: 862-874. [6] Yu Zhiyong, D. Laub, M. Bensimon, J. Kiwi*. Flexible polymer TiO2 modified film photocatalysts active in the photodegradation of azo-dyes in solution. Inorganica Chimica Acta. 2008, 361, 589-594. [7] Yu Zhiyong, H. Keppner, D. Laub, E. Mielczarski, J. Mielczarski, L. Kiwi-Minsker, A. Renken, J. Kiwi*. Photocatalytic discoloration of Methyl Orange on innovative parylene–TiO2 flexible thin films under simulated sunlight. Applied Catalysis B: Environmental. 2008, 79: 63-71. [8] Yu Zhiyong*, Detlef Bahnemann*, Ralf Dillert, Song Lin, Lu Liqin. Photocatalytic degradation of azo dyes by BiOX (X = Cl, Br). Journal of Molecular Catalysis A. 2012, 365: 1-7. [9] Yu Zhiyong*, Wang Wenhua, Song Lin, Lu Liqin, Wang Zhiyin, Jiang Xuanfeng, Dong Chaonan, Qiu Ruiying. Acceleration comparison between Fe2+/H2O2 and Co2+/oxone for decolouration of azo dyes in homogeneous systems. Chemical Engineering Journal. 2013, 234: 475-483. [10] Yu Zhiyong*, Dong Chaonan, Qiu Ruiying, Xu Lijin, Zheng Aihua. Photocatalytic degradation of methyl orange by PbXO4 (X = Mo, W). Journal of Colloid and Interface Science. 2015, 438: 323-331. [11] Yu Zhiyong*, Qiu Ruiying, Li Huanrong, Wang Zhiyin, Ma Xiaohong, Dong Chaonan. Preparation and photocatalytic activity of SnO2. Materials Letters. 2016, 170: 25-30. [12] YuZhiyong*, Liu Yaqian, He Wen, Wang Zhiyin*. Evaluation of effect from Ag-AgX (X = Cl, Br, I) on photodegradation of azo dyes. Catalysis Today. 2019, 335, 574-581. [13] Yu Zhiyong*, Xu Liang, Liang Zhenning, Wang Zhiyin. Doping and immobilization of TiO2 with element Na and raschig rings. Chemical Physics Letters, 2019, 732, Article 136634. [14] Yu Zhiyong*, et al.. Photodegradation comparison for methyl orange by TiO2, H2O2 and KIO4. Environmental Technology. Accepted.

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