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北京化工大学化学工程学院导师教师师资介绍简介-方云明

本站小编 Free考研考试/2020-05-11

方云明教授 博士生导师

办公地址
化学工程楼410房间
电子邮箱
fangym@mail.buct.edu.cn
联系电话






招生专业及研究方向
招生专业:
化学工程与工艺、材料科学与工程、应用化学
研究方向:
生物质定向催化转化方向、新型催化材料制备与应用方向
个人经历
2013/02–至今,北京化工大学,化学工程学院,教授
2008/01-2013/02,中国科学院青岛生物能源与过程研究所,副研究员
2009/02-2010/02,美国亚利桑那州立大学,访问
2007/04-2007/06,香港科技大学,工学院化学工程系,研究助理
2003/09-2008/01,大连理工大学,化工学院,工学博士
1999/09-2003/07,华中师范大学,化学学院,工学学士
科研项目
[1]生物质废弃物太阳能辅助气化及合成气发酵制液体燃料,国家重点研发计划项目—政府间国际科技创新合作重点专项,311万元,2019-2021年,主持,在研
[2]催化裂化过程中共处理生物油的中试研究,Mobil公司国际合作项目,165万元,2019-2021年,主持,在研
[3]生物质(油脂、木质纤维素、热解油)炼制航空燃料技术开发及中试示范,Boeing国际合作项目,100万元,2018-2019年,主持,已结题
[4]木质素催化转化制备生物航空燃料组分,国家重点研发计划,50万元,2019-2023年,主持,在研
[5]重油/生物油共催化裂化过程的碳14同位素研究,国家自然科学基金青年科学基金项目,25万元,2013-2015年,主持,已结题
学术成就
本人从事生物质炼制清洁液体燃料方向研究,主要学术贡献包括:已成功开发了木质素为先的生物质炼制航空燃料等过程并完成中试示范、在J.Am.Chem.Soc、Biotechnology Advances、ACS Catalysis、Green Chemistry、Fuel、Energy & Fuels等SCI杂志上发表论文40余篇,申请多项中国及PCT专利,吸引了国际著名公司壳牌(Shell)、波音公司及荷兰BTG-BTL公司等的主动科技合作,建立了长期稳定的合作关系。曾获得全国优秀博士论文奖(2010年)、中国科学院卢嘉锡青年人才奖(2012年)、闵恩泽能源化工奖(木质纤维素炼制液体燃料及化学品,2017年)等省部级奖项。
发表论文:
[1]Meng Wang, Raf. Dewil, Kyriakos Maniatis, John Wheeldon, Tianwei Tan , Jan Baeyens, Yunming Fang*,Biomass-derived aviation fuels: Challenges and perspective, Progress in Energy and Combustion Science, 2019,74:31-49.
[2]Yunming Fang, Haoquan Hu*, An ordered mesoporous aluminosilicate with completely crystalline zeolite wall structure, Journal of the American Chemical Society, 2006, 128, 10636-10637.
[3]Meng Wang, Biqiang Chen, Yunming Fang*, Tianwei Tan*, Cofactor engineering for more efficient production of chemicals and biofuels, Biotechnology Advances, 2017, 35, 1032-1039.
[4]Yuping Zhou, Yong Huang, Yunming Fang*, Tianwei Tan, Selective conversion of castor oil derived ricinoleic acid methyl ester into jet fuel, Green Chemistry, 2016, 18, 5180-5189.
[5]Meng Wang, Mojin Chen, Yunming Fang*, Tianwei Tan, Highly efficient conversion of plant oil to bio-aviation fuel and valuable chemicals by combination of enzymatic transesterification, olefin cross-metathesis, and hydrotreating, Biotechnology for Biofuels, 2018 11:30
[6]Yong Huang, Yijing Duan, Shi Qiu, Meng Wang, Chao Ju, Hui Cao, Yunming Fang*, Tianwei Tan, Lignin-first biorefinery: a reusable catalyst for lignin depolymerization and application of lignin oil to jet fuel aromatics and polyurethane feedstock, Sustainable Energy & Fuels, 2018, 2, 637-647.
[7]Chenxi Wang, Mingrui Li, Yunming Fang*, Co-processing of catalytic pyrolysis derived bio-oil with VGO in a pilot scale FCC riser, Industrial & Engineering Chemistry Research, 2016, 55, 3525-3534.
[8]Qiuying Wu, Isaac Nartey Oduro, Yong Huang, Yunming Fang*, Synthesis of hierarchical SAPO-11 via seeded crystallization, Microporous and Mesoporous Materials, 2015, 218, 24-32.
[9]Mingli He, Meng Wang, Guanglu Tang, Yunming Fang*, Tianwei Tan, From medium chain fatty alcohol to jet fuel: Rational integration of selective dehydration and hydro-processing Applied Catalysis A: General, 2018, 550, 160-167.
[10]Chao Ju, Yuping Zhou, Mingli He, Qiuying Wu, Yunming Fang*, Improvement of selectivity from lipid to jet fuel by rational integration of feedstock properties and catalytic strategy, Renewable Energy, 2016, 97, 1-7.
[11]Yunming Fang, Haoquan Hu*, Guohua Chen, In situ assembly of zeolite nanocrystals into mesoporous aggregate with single crystal-like morphology without secondary template, Chemistry of Materials, 2008, 20, 1670-1672.
[12]Yunming Fang, Haoquan Hu*, Guohua Chen, Zeolite with tunable intracrystal mesoporosity with carbon aerogel as secondary template, Microporous & Mesoporous Materials, 2008, 113, 481-489.
[13]Meng Wang, Mingli He, Yunming Fang*, Jan Baeyens, Tianwei Tan*, The Ni-Mo/γ-Al2O3 catalyzed hydrodeoxygenation of FAME to aviation fuel, Catalysis Communications, 2017,100, 237-241.
[14]Chao Ju, Feng Wang, Yong Huang, Yunming Fang*, Selective extraction of neutral lipid from wet algae paste and subsequently hydroconversion into renewable jet fuel, Renewable Energy, 2018, 118,521-526.
[15]Ling-Ping Xiao, Shuizhong Wang, Helong Li, Zhaowei Li, Zheng-Jun Shi, Liang Xiao, Run-Cang Sun, Yunming Fang*, and Guoyong Song*,Catalytic Hydrogenolysis of Lignins into Phenolic Compounds over Carbon Nanotube Supported Molybdenum Oxide,ACS Catalysis, 2017, 7, 7535–7542.
[16]Shi Qiu, Mingrui Li, Yong Huang*, Yunming Fang*, Catalytic Hydrotreatment of Kraft Lignin over NiW/SiC: Effective Depolymerization and Catalyst Regeneration, Industrial & Engineering Chemistry Research, 2018, 57, 2023–2030.
[17]Yong Huang, Yalun Hu, Fenghui Ye, Yunming Fang*, Lignin Pyrolysis and in Situ Hydrodeoxygenation over MoO3: Interaction between MoO3 and Lignin, Energy& Fuels, 2017, 31, 8356–8362.
[18]Mingrui Li, Yuping Zhou, Chao Ju, Yunming Fang*, Remarkable increasing of ZSM-5 lifetime in methanol to hydrocarbon reaction by post engineering in fluoride media, Applied Catalysis A: General, 2016, 512, 1-8.
[19]Qiuying Wu, Mingrui Li, Yong Huang, Yunming Fang*, Hierarchical ZSM-5 by 90° twin intergrowth of mesoporous nanofibers: Synthesis and application in methanol/propanal to hydrocarbon reaction, Microporous and Mesoporous Materials, 2016, 226, 284-291.
[20]Mingrui Li, Yong Huang, Isaac Nartey Oduro, Yunming Fang*, Selective conversion of small bio-oxygenates into high quality gasoline precursors over deactivated ZSM-5 in MTG reaction, Fuel Processing Technology, 2016, 149, 1-6.
[21]Mingrui Li, Yuping Zhou, Isaac Nartey Oduro, Yunming Fang*, Comparative study on the catalytic conversion of methanol and propanal over Ga/ZSM-5, Fuel, 2016, 168, 68-75.
[22]Mingrui Li, Yong Huang, Chao Ju, Yunming Fang*, Release of full catalytic capacity of desilicated ZSM-5 in MTH reaction: Al migration along mesopore introduction and post engineering, Microporous and Mesoporous Materials, 2017, 244, 7-14.
[23]Yuxin Wang, Yunming Fang*, Tao He, Haoquan Hu, Jinhu Wu, Hydrodeoxygenation of dibenzofuran over noble metal supported on mesoporous zeolite, Catalysis Communications, 2011, 12, 1201-1205.
[24]Tao He, Yuxin Wang, Pengjie Miao, Jianqing Li, Jinhu Wu, Yunming Fang*, Hydrogenation of naphthalene over noble metal supported on mesoporous zeolite in the absence and presence of sulfur, Fuel, 2013, 106, 365-371.
[25]Chao Ju, Yuxin Wang, Yong Huang, Yunming Fang*, Design of mesoporous KA zeolite supported sulfur-tolerant noble metal catalyst for naphthalene hydrogenation, Fuel, 2015, 154, 80-87.
[26]Yong Huang, Shi Qiu, Isaac Nartey Oduro, Xuan Guo, Yunming Fang*, Production of High-Yield Bio-oil with a High Effective Hydrogen/Carbon Molar Ratio through Acidolysis and In Situ Hydrogenation, Energy & Fuels, 2016, 30, 9524-9531.
[27]Yong Huang, Shi Qiu, Xuan Guo, Shenghua Lin, Yunming Fang*, One-Pot Conversion of Carbohydrates in Biomass to Isobutyroin-Rich Branched Oxygenates: Carbohydrate Depolymerization and Methyl Introduction in Supercritical Methanol, Energy& Fuels, 2017, 31, 688–692.
[28]Guanglu Tang, Mingrui Li, Bin Wang, Yunming Fang*, Tianwei Tan,Selective conversion of butanol into liquid branched olefins over zeolites,Microporous and Mesoporous Materials, 2018, Doi.org/10.1016/j.micromeso.2018.02.017.
[29]Yalun Hu, Isaac Nartey Oduro, Yong Huang*, Yunming Fang, Structural characterization and pyrolysis behavior of holocellulose obtained from lignin-first biorefinery, Journal of Analytical and Applied Pyrolysis, 2016, 120, 416-422.
[30]Chao Ju, Meng Wang, Yong Huang, Yunming Fang*, and Tianwei Tan, High Quality Jet Fuel Blend Production by Oxygen-Containing Terpenoids Hydro-processing, ACS Sustainable Chem. Eng.,2018, DOI: 10.1021/acssuschemeng.7b04334
[31]Yong Huang, Yalun Hu, Jun-ichiro Hayashi*, Yunming Fang*, Interactions between Volatiles and Char during Pyrolysis of Biomass: Reactive Species Determining and Reaction over Functionalized Carbon Nanotubes, Energy & Fuels, 2016, 30, 5758-5765.
[32]Yunming Fang, Haoquan Hu*, Mesoporous TS-1: Nanocasting synthesis with CMK-3 as template and its performance in catalytic oxidation of aromatic thiophene, Catalysis Communications, 2007, 8, 817-820.
[33]Yuxin Wang, Kaituo Liu, Tao He, Jinhu Wu, Yunming Fang*, Zeolite with trimodal porosity by desilication of zeolite nanocrystals aggregate, Journal of Solid State Chemistry, 2012, 194, 416–421.
[34]Mingrui Li, Isaac Nartey Oduro, Yong Huang, Yunming Fang*, Amphiphilic organosilane and seed assisted hierarchical ZSM-5 synthesis: Crystallization process and structure. Microporous and Mesoporous Materials, 2016, 221, 108-116.
[35]Mingrui Li, Yuping Zhou, Yunming Fang*., Functioned carbon nanotube templated hierarchical silicate-1 synthesis:On the existence of super-micropore, Microporous and Mesoporous Materials, 2016, 225, 392-398.
[36]Yunming Fang, Haoquan Hu*, Shape-selectivity in 2,6-dimethylnaphthalene synthesis over ZSM-5: Computational analysis using density functional theory, Catalysis Communications 2006, 7, 264–267.
[37]Yuxin Wang, Tao He, Kaituo Liu, Jinhu Wu, Yunming Fang*, From biomass to advanced bio-fuel by catalytic pyrolysis/hydro-processing: Hydrodeoxygenation of bio-oil derived from biomass catalytic pyrolysis, Bioresource Technology, 2012, 108, 280-284.
论著专利
[1]方云明. 《多级孔道沸石分子筛:合成、表征及催化应用》,大连理工大学出版社,2012
[2]Yunming Fang et. al. Process for the conversion of biomass-derived vapours and process for the conversion of a solid biomass material. PCT/CN2016/090878
[3]Yunming Fang et. al.Process for production of aromatics via pyrolysis of lignin comprising material. PCT/CN2014/095349
[4]方云明等,一种以低品质油脂为原料生物—化学催化偶联制备生物航空燃料的方法. 5.8
[5]方云明等,一种利用固体碱催化剂催化解聚木质素的方法. 5.7
[6]方云明等,生物质热催化转化及精制制备航空燃料的工艺方法. ZL6.2

合作交流
不列颠哥伦比亚大学、波音公司、壳牌公司、埃森克美孚
招生需求
刻苦勤奋、有团队合作精神、良好的英语水平





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