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曲振平

领域:节能环保产业 学校:大连理工大学职称:教授

原位反应和表征技术的开发与应用 CO2资源化利用与转化 工业废气及挥发性有机污染物的净化 环境纳米催化 大气污染控制...

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教育背景

1998.9 2004.3 中科院大连化学物理研究所 物理化学 博士 1994.9 1998.7 吉林大学环境学院 环境化学 学士 1991.9 1994.7 辽宁师范大学附属中学 无

工作经历

2006.4 至今 大连理工大学环境学院 2004.4 2006.3 德国斯图加特大学 1998.9 2004.3 中科院大连化学物理研究所

项目课题经历

共承担与参与了国家级、省部级、校级等科研项目20余项。

论文、成果、著作等

近期发表的代表性论文如下: [1] Cui Dong, Zhenping Qu*, Yuan Qin, Qiang Fu, Hongchun Sun, Xiaoxiao Duan, Revealing the Highly Catalytic Performance of Spinel CoMn2O4 for Toluene Oxidation: Involvement and Replenishment of Oxygen Species Using in situ Designed-TP Techniques, ACS Catalysis, 2019, 9, 6698−6710 (SCI, EI, Impact Factor: 12.221) [2] Xiaoyu Zhang, Hui Wang, Xiao Jiang, Hongchun Sun, Zhenping Qu*,Study of Synergistic Effect between CuO and CeO2 over CuO@CeO2 Core-Shell Nanocomposites for NH3-SCO, 2019, Catal. Sci. Technol., 2019, 9, 2968-2981 (SCI, EI,Impact Factor: 5.726) [3] Zhexi Lin, Rui Chen, Zhenping Qu*, Jingguang G. Chen*, Hydrodeoxygenation of biomass-derived oxygenates over metal carbides: from model surfaces to powder catalysts, Green Chem., 2018, 20, 2679-2696 (SCI, EI,Impact Factor: 9.405) [4] Jinpeng Du, Zhenping Qu*, Cui Dong, Lixin Song, Yuan Qin, Na Huang,Low-temperature abatement of toluene over Mn-Ce oxides catalysts synthesized by a modified hydrothermal approach, Applied Surface Science, 2018, 433, 1025–1035 (SCI, EI,Impact Factor: 5.155) [5] Hui Wang, Zhenping Qu*, Shicheng Dong, and Chen Tang, Mechanistic Investigation into the Effect of Sulfuration on the FeW Catalysts for the Selective Catalytic Reduction of NOx with NH3, ACS Appl. Mater. Interfaces, 2017, 9 (8), 7017–7028 (SCI, EI, Impact Factor: 8.456) [6] ) Hui Wang, Zhenping Qu*, Shicheng Dong, Hongbin Xie and Chen Tang, Superior performance of Fe1-xWxOδ for the selective catalytic reduction of NOx with NH3: interaction between Fe and W, Environmental Science & Technology, 2016, 50(24), 13511−13519 (SCI, EI,Impact Factor: 7.149) [7] Hui Wang, Zhenping Qu*,Hongbin Xie, Nobutaka Maeda, Lei Miao, Zhong Wang, Insight into the mesoporous FexCe1-xO2-d catalysts for selective catalytic reduction of NO with NH3: Regulable structure and activity, Journal of Catalysis, 2016, 338, 56–67 (SCI, EI, Impact Factor: 7.723) [8] Zhenping Qu*, Zhong Wang, Xiaoyu Zhang, Hui Wang, Role of different coordinated Cu and reactive oxygen species on the highly active Cu–Ce–Zr mixed oxides in NH3-SCO: a combined in situ EPR and O2-TPD approach, Catal. Sci. Technol., 2016, 385,4491-4502 (SCI, EI, Impact Factor: 5.726) [9] Zhenping Qu*, Xiaodong Zhang, Fangli Yu, Xianchun Liu, Qiang Fu, Role of the Al chemical environment in the formation of silver species and its CO oxidation activity, Journal of Catalysis, 2015, 321, 113-122 (SCI, EI, Impact Factor: 7.723) [10] Zhenping Qu*, Lei Miao, Hui Wang, Qiang Fu, Highly dispersed Fe2O3 on carbon nanotubes for low-temperature selective catalytic reduction of NO with NH3, Chemical Communications, 2015, 51(5), 956-958 (SCI, Impact Factor: 6.164) [11] Zhenping Qu*,Yahui Sun, Dan Chen, Yi Wang, Possible sites of copper located on hydroxyapatite structure and the identification of active sites for formaldehyde oxidation, Journal of Molecular Catalysis. A, Chemical, 2014, 393, 182–190 (SCI, EI, Impact Factor: 5.008) [12] Zhenping Qu*, Yibin Bu, Yuan Qin, Kang Gao, Yi Wang, Qiang Fu, The improved reactivity of manganese catalysts by Ag in catalytic oxidation of Toluene, Applied Catalysis B: Environmental, 2013, 132-133, 353-362. (SCI, EI, Impact Factor: 14.229) [13] Dan Chen, Zhenping Qu*, Yahui Sun, Kang Gao, Yi Wang, Identification of reaction intermediates and mechanism responsible for highly active HCHO oxidation on Ag/MCM-41 catalysts, Applied Catalysis B: Environmental, 2013, 142-143, 838-848. (SCI, EI, Impact Factor: 14.229) [14] Zhong Wang, Zhenping Qu*, Xie Quan, Hui Wang, Zhuo Li, Selective catalytic oxidation of a mmonia to nitrogen over CuO-CeO2 mixed oxides prepared by surfactant-templated method, Applied Catalysis B: Environmental, 2013, 134-135, 153-166. (SCI, EI, Impact Factor: 14.229) [15] Xiaodong Zhang, Zhenping Qu*, Fangli Yu, Yi Wang, High-temperature diffusion induced high activity of SBA-15 supported Ag particles for low temperature CO oxidation at room temperature, Journal of Catalysis, 2013, 297, 264-271.(SCI, EI, Impact Factor: 7.723) [16] Zhenping Qu*, Zhong Wang, Xie Quan, Hui Wang, Yun Shu, Selective catalytic oxidation of ammonia to N2 over wire-mesh honeycomb catalyst in simulated synthetic ammonia stream, Chemical Engineering Journal, 2013, 233, 233-241. (SCI, EI, Impact Factor: 8.355) [17] Zhenping Qu*, Fangli Yu, Xiaodong Zhang, Yi Wang, Jinsuo Gao, Support effects on the structure and catalytic activity of mesoporous Ag/CeO2 catalysts for CO oxidation, Chemical Engineering Journal, 2013, 229, 522-532. (SCI, EI, Impact Factor: 8.355) [18] Zhenping Qu*,Yibin Bu, Yuan Qin, Yi Wang, Qiang Fu, The effects of alkali metal on structure of manganese oxide supported on SBA-15 for application in the toluene catalytic oxidation,Chemical Engineering Journal, 2012, 209, 163-169. (SCI, EI, Impact Factor: 8.355)

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