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钱刚,副研究员,主要从事新型化工过程强化与优化、炭载金属催化剂结构调控与性能优化等方面的研究及开发工作。作为项目负责人和主要研究人员先后参与了国家重点研发计划、国家自然科学基金以及上海市自然科学基金等多个项目的研究工作。已发表SCI论文50多篇,授权国家发明专利8项。
教育以及工作经历 2012/08-2013/07以色列本-古里安大学,访问学者 2007/09-至今华东理工大学化工学院,副研究员 2004/04-2007/08华东理工大学化工学院,讲师 1998/04-2000/08无锡轻工大学化工学院,助教 2000/09-2004/04华东理工大学化工学院,博士 1995/09-1998/04合肥工业大学化工学院,硕士 1991/09-1995/07合肥工业大学化工学院,本科
研究兴趣 催化反应工程:研究催化剂结构设计与调控、催化反应动力学等。 晶体生长过程调控:研究晶体生长的物理化学环境对结晶产品性能的影响、晶体成核与生长动力学以及结晶过程模型化和优化。
主要在研项目 非碱性条件下甘油选择性氧化Pt-C纳米复合物催化剂的结构效应及反应动力学,上海市自然科学基金,负责人 贯流式列管反应器甲烷化动力学和多尺度模型模拟,国家重点研发计划子课题,负责人
代表性论文 Xuezhi Duan, Yanfang Zhang, Minjian Pan, Hua Dong, Bingxu Chen, Yuanyuan Ma, Gang Qian*, Xinggui Zhou, Jia Yang, De Chen*. SbOx-promoted Pt nanoparticles supported on CNTs as catalysts for base-free oxidation of glycerol to dihydroxyacetone. AIChE Journal, 2018, 64(11): 3979-3987. Jian Ji, Xiaodong Yan, Gang Qian*, Chong Peng, Xuezhi Duan*, Xinggui Zhou. Morphology and location manipulation of Fe nanoparticles on carbon nanofibers as catalysts for ammonia decomposition to generate hydrogen. International Journal of Hydrogen Energy, 2017, 42(27): 17466-17475. Xiangyang Zhang, Gang Qian*, Xinggui Zhou. Kinetic modeling on batch-cooling crystallization of zinc lactate: The influence of malic acid. Journal of Crystal Growth, 2017, 463: 162-167. Jiaqi Lei, Hua Dong, Xuezhi Duan, Wenyao Chen, Gang Qian*, De Chen, Xinggui Zhou. Insights into activated carbon-supported platinum catalysts for base-free oxidation of glycerol. Industrial & Engineering Chemistry Research, 2016, 55(2): 420-427. Shanshan Liang, Xuezhi Duan, Xiangyang Zhang, Gang Qian*, Xinggui Zhou. Water effect on secondary nucleation of the beta-form on the surface of the alpha-form of L-glutamic acid. Chemical Engineering & Technology, 2016, 39(7): 1295-1300. Shanshan Liang, Xuezhi Duan, Xiangyang Zhang, Gang Qian*, Xinggui Zhou. Supersaturation-dependent polymorphic outcome and transformation rate of L-glutamic acid. RSC Advances, 2016, 6(78): 74700-74703. Xuezhi Duan, Jian Ji*, Xiaodong Yan, Gang Qian*, De Chen*, Xinggui Zhou. Understanding Co-Mo catalyzed ammonia decomposition: Influence of calcination atmosphere and identification of active phase. ChemCatChem, 2016, 8(5): 938-945. Wenhui Tan, Xiangyu Yang, Xuezhi Duan, Xiangyang Zhang, Gang Qian*, Xinggui Zhou. Understanding supersaturation-dependent crystal growth of L-alanine in aqueous solution. Crystal Research & Technology, 2016, 51(1): 23-29. Shanshan Liang, Xuezhi Duan, Xiangyang Zhang, Gang Qian*, Xinggui Zhou. Insights into polymorphic transformation of L-Glutamic Acid: A combined experimental and simulation study. Crystal Growth & Design, 2015, 15(8): 3602-3608. Xuezhi Duan, Jian Ji, Gang Qian*, Xinggui Zhou, De Chen*. Recent advances in synthesis of reshaped Fe and Ni particles at the tips of carbon nanofibers and their catalytic applications. Catalysis Today, 2015, 249: 2-11. Xiangyang Zhang, Gang Qian*, Rui Wang, Xiaowu Yang, Lin Hao, Hongyuan Wei, Xinggui Zhou. Correlation of solubility and calculation of thermodynamic properties of guanidine nitrate in different solvents. Fluid Phase Equilibria, 2015, 388: 59-65. Jiaqi Lei, Xuezhi Duan, Gang Qian*, Xinggui Zhou, De Chen. Size effects of Pt nanoparticles supported on carbon nanotubes for selective oxidation of glycerol in a base-free condition. Industrial & Engineering Chemistry Research, 2014, 53(42): 16309-16315. Gang Qian, Yangyang Wu, Xiangyu Yang, Xuezhi Duan, Xinggui Zhou*. Effect of polymorphism on the purity of L-glutamic acid. Journal of Crystal Growth, 2013, 373: 78-81. Gang Qian, Yangyang Wu, Xiangyu Yang, Xinggui Zhou*. Exploiting polymorphism in the purity enhancement of lincomycin hydrochloride. Chemical Engineering Science, 2012, 77: 42-46.
主要专利 段学志,周湘萍,王迪,冯翔,纪建,钱刚,周兴贵, 一种负载型铁基催化剂及其制备方法和用途, ZL201510119424.4 段学志,王迪,周湘萍,冯翔,钱刚,周兴贵, 一种用于合成气制低碳烯烃的铁基纳米催化剂制备方法, ZL201410748586.X 周兴贵,冯翔,段学志,钱刚, 一种丙烯环氧化制备环氧丙烷的催化剂的再生方法, ZL201410035286.7 周兴贵,冯翔,段学志,钱刚,陈文尧, 一种钛硅分子筛制备方法和用途, ZL201310342500.9 周兴贵,冯翔,段学志,钱刚, 一种介孔钛硅分子筛及其制备方法和用途, ZL201310342512.1 周兴贵,段学志,钱刚,李平,周静红,隋志军, 用氨分解反应制备零COx氢气的催化剂及其制备方法, ZL201010246458.7
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网页发布时间: 2018-12-05
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