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您所在的位置: 科研队伍 >> 师资力量 >> 教授
李永丹

姓名

李永丹

职称

教授/博导

职务

化工学院催化科学与工程系主任

国家重点学科工业催化学科负责人

天津市应用催化科学与工程实验室主任

专业

 

所在系、所

化工学院催化科学与工程系

通讯地址 

天津大学化工学院催化科学与工程系 300072

电子信箱  

ydli@tju.edu.cn

办公室电话

+86-22-27405613

传真 

+86-22-27405243

主要学历:    
1982年获环境工程专业学士学位,
1984年获工业催化专业硕士学位,
1989年在天津大学化工系获工业催化专业博士学位,
1990-1992年先后在荷兰Twente大学、法国洛林理工学院做博士后。

主要学术经历:    
现任天津大学教授、博士生导师、任化工学院催化科学与工程系主任、国家重点学科工业催化学科负责人、天津市应用催化科学与工程实验室主任

主要研究方向:    
1.新型催化材料研究
2.用于高效制氢的无机膜和无机膜反应器
3.高效燃料电池和电极过程化工利用
4.工业催化剂和催化反应过程工程研究

主要学术兼职:    
中国颗粒学会理事,中国化学会催化专业委员会委员。

主要学术成就、奖励及荣誉:    
2007年度被教育部聘为天津大学工业催化专业长江学者特聘教授,
2006年被选为教育部选为 “能源高效利用的化工反应分离集成技术研究”创新团队带头人,
2004年获得国家杰出青年科学基金,入选国家百千万人才计划国家级人选,获天津市授衔专家

代表性论著:    

1.Yongdan Li, Preface, Catalysis Today, 30(1-3), 1, 1996
2.Yongdan Li, Jiusheng Zhao and Liu Chang, Factors Analysis for Mechanical St rength in Pelleting Process of Fe-based High Temperature Shift Catalyst, Studies in Surface Science and Catalysis
(Preparation of Catalysts V), 63, 145-153, 1991
3.Simultaneous production of hydrogen and nanocarbon from decomposition of methane on a nickel-based catalyst, Yongdan Li, Jiuling Chen, Yongning Qin and Liu Chang, Energy and Fuels, 2000, 14(6)
1188-1194

4.H.M. Swaan, Yongdan Li, K. Seshan, J.G. van Ommen and J.R.H. Ross, The Oxidative Coupling of Methane and the Oxidative Dehydrogenation of Ethane over a Niobium Promoted Lithium Doped Magnesium Oxide Catalyst, Catalysis Today, 16(3/4), 537-546, 1993
5.Guy-Marie C?me, Yongdan Li Pascal Barbe, Nicoles Gueritey, Paul-Marie Marquaire and Fran?ois Baronnet, Competition between Gas and Surface Reactions in the Oxidative Coupling of Methane, 2.
Isothermal Experiments in a Catalytic Jet-stirred Gas Phase Reactor,   Catalysis Today, 30(1-3), 215-222, 1996
6.Dongfang Wu, Jiancheng Zhou, Yongdan Li, Mechanical Strength of Solid Catalysts: Recent Developments and Future Prospects, AIChEJ  2007, 53, 2618-2629
7.Huiyuan Gao, Y. S. Lin, Yongdan Li, Baoquan Zhang, Chemical Stability and Its Improvement of Pd-based Metallic Membranes, Industrial & Engineering Chemistry Research, 2004, 43(22), 6920-6930,
invited review
8.Xue Yang, Zhaofu Fei, Dongbin Zhao, Wee Han Ang, Yongdan Li, and Paul J. Dyson, Palladium nanoparticles stabilized by an ionic polymer and ionic liquid: a versatile system for C-C cross coupling
reactions. Inorganic Chemistry , DOI: 10.1021/ic702305t9.Tong Li and Yongdan Li, Effect of Magnesium Substitution into LaMnAl11O19 Hexaaluminate on the Activity of Methane Catalytic Combustion, Ind Eng Chem Res, 2008, 47, 1404-1408
10.Shuo Liu, Ke Zhang, Lining Fang, and Yongdan Li, Thermodynamic Analysis of Hydrogen Production from Oxidative Steam Reforming of Ethanol, Energy & Fuels, 2008; 22(2); 1365-1370
11.Lingyu Piao, Quanrun Liu, Yongdan Li and Chen Wang, Adsorption of L-phenylalanine on single-walled carbon nanotubes, J. Phys Chem C, 2008, 112, 2857-2863
12.Wanliang Mi, Y. S. Lin, Yongdan Li, Vertically aligned carbon nanotube membranes on macroporous alumina supports, J Membrane Science, 2007, 304, 1-7
13.Haijuan Zhang, Xiangchun Meng, Yongdan Li, and Y. S. Lin, MCM-41 Overgrown on Y Composite Zeolite as Support of Pd-Pt Catalyst for Hydrogenation of Polyaromatic Compounds, Ind. Eng. Chem. Res.,
2007, 46, 4186-4192
14.Yumin Liu, Heqin Yang, Fang Jin, Yue Zhang, Yongdan Li, Synthesis of pyridine and picolines over Co-modified HZSM-5 catalyst, Chem. Eng. J. 136 (2007)282-287
15.Xiangchun Meng, Yuxiu Wu and Yongdan Li, Tailoring the pore size of zeolite Y as the support of diesel aromatic saturation catalyst, J Porous Materials, (2006) 13:365-371
16.Dongfang Wu, Jiancheng Zhou and Yongdan Li, Unbiased estimation of Weibull parameters with the linear regression method, Journal of the European Ceramic Society, 26(7), 2006, 1099-1105
17.Chunnian He, Naiqin Zhao, Xiwen Du, Chunsheng Shi, Jian Ding, Jiajun Li, Yongdan Li, Low-temperature synthesis of carbon onions by chemical vapor deposition using a nickel catalyst supported on
aluminum, Scripta Materialia, 54 (4) (2006) 689-693
18.X. X. Zhang, Z. Q. Li, G.H. Wen and K.K. Fung, Jiuling Chen and Yongdan Li, Microstructure and Growth Mechanism of Bamboo-shaped Carbon Nanotubes, Chemical Physics Letters,333(6) (2001), 509-
514
19.Dongfang Wu, Yongdan Li, Yahua Shi, Zhiping Fang, Dihua Wu, and Liu Chang, Effects of the calcination conditions on the mechanical properties of a PCoMo/Al2O3 hydrotreating catalyst,Chemical
Engineering Science, 57 (2002) 3495 – 3504
20.Qian WZ, Liu T, Wei F, Wang ZW, Li YD, Enhanced production of carbon nanotubes: combination of catalyst reduction and methane decomposition, APPLIED CATALYSIS A-GEN, 258 (1): 121-124, 2004
21.Dongfang Wu, Yongdan Li, Jianpo Zhang, Liu Chang, Dihua Wu, Zhiping Fang, and Yahua Shi, Effect of the number of testing specimens and the estimation methods on the Weibull modulus of solid
catalysts, Chemical Engineering Science, 56 (24) (2001)7035-7044
22.Formation of bamboo-like nanocarbon and evidence for quasi-liquid state of nanosized metal particles at moderate temperatures, Yongdan Li, Jiuling Chen, Yanmei Ma, Jinbao Zhao, Yongning Qin and
Liu Chang, Chemical Communications, 1999,1141-1142

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