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博士生导师简介:王建国

王建国  1962年12月生。理学博士,研究员、博士生导师。1985年7月毕业于兰州大学化学系物理化学专业,同年考取本校硕士研究生,进行非电解质溶液的结构和热力学研究。1988年7月获硕士学位后到太原理工大学应用化学系工作,1991年9月考入中科院山西煤化所攻读博士学位,在导师彭少逸院士和陈诵英研究员指导下开展沸石分子筛中吸附、扩散和形状选择反应的理论计算和实验研究,1995年9月取得博士学位。1996年作为洪堡学者,赴德国Erlangen-Nuremberg大学第一工业化学研究所工作,继续进行分子筛结构性能的理论与实验研究。2000年入选中科院“百人计划”,现任山西煤化所副所长、煤转化国家重点实验室主任、《燃料化学学报》副主编,兰州大学兼职教授、博士生导师。
发表国际期刊论文70余篇。主要开展催化剂结构、性能和烃催化转化新过程等领域的实验和理论研究。

近五年主持和参加的科研项目:
(1) 国家973项目,重油高效转化与优化利用的基础研究-重油催化反应历程的分子模拟和实验研究,2004.9-2009.8,课题负责人。
(2) 国家基金委重大项目,能源发展中的若干关键化学科学基础问题,2005.3-2008.2,项目负责人。
(3) 国家973项目,天然气、煤层气优化利用的催化基础-天然气经合成气制甲醇和含氧化合物,1999.10-2004.10,参加。
(4) 中科院“百人计划”,沸石分子筛结构、性能及在催化中的应用,2001.1-2003.12,项目负责人。
(5) 国家基金,分子筛中吸附的实验与分子模拟研究(20073057),2001.1-2003.12,项目负责人。
代表论文:
1. M. Dong, G.F. Wang, Z.F. Qin, J.G. Wang, T. Liu, S.P. Yuan, and Haijun Jiao. A Comparative Investigation of Co2+ and Mn2+ Incorporation into Aluminophosphates by in situ XAFS and DFT Computation, J. Phys. Chem. A, 2007, in press.
2. S.W. Chen, Z.F Qin, X.F. Xu, and J.G. Wang, Structure and properties of the alumina–supported vanadia catalysts for ethylbenzene dehydrogenation in the presence of carbon dioxide, Appl. Catal. A: General, 2006, 302(2): 185–192.
3. S.P. Yuan, J.G. Wang, Y.B. Duan, Y.W. Li, and Haijun Jiao, An ONIOM2 study on pyridine adsorption in the main channels of Li- and Na-MOR, J. Mol. Catal. A: Chem., 2006, 256 (1): 130–137.
4. N. Jiang, S.P. Yuan, J.G. Wang, Z.F. Qin, Haijun Jiao, and Y.W. Li, An ONIOM study of amines adsorption in H-[Ga]MOR, J. Mol. Catal. A: Chem., 2005, 232(1–2): 59–67.
5. Z. Tian, Z.F. Qin, M. Dong, G.F. Wang, and J.G. Wang, A comparative study on the alkylation of benzene with propene over HBeta zeolites in different phases, Catal. Commun., 2005, 6(6): 385–388.
6. H.Q. Zhu, Z.F. Qin, W.J. Shan, W.J. Shen, and J.G. Wang, Low temperature oxidation of CO over Pd/CeO2-TiO2 catalysts with different pretreatments, J. Catal., 2005, 233(1): 41–50.
7. J. Ren, C.F. Huo, J.G. Wang, Y.W. Li, and Haijun Jiao, Surface structure and energetics of oxygen and CO adsorption on α-Mo2C(0001), Surf. Sci., 2005, 596(1-3): 212-221.
8. R.Z. Zhang, Z.F. Qin, M. Dong, G.F. Wang, and J.G. Wang, Selective oxidation of cyclohexane in supercritical carbon dioxide over CoAPO-5 molecular sieves, Catal. Today, 2005, 110(3-4): 351–356.
9. S.P. Yuan, W. Shi, B.R. Li, J.G. Wang, Haijun Jiao, and Y.W. Li, A theoretical ONIOM2 study on pyridine adsorption in the channels and intersection of ZSM-5, J. Phys. Chem. A, 2005, 109(11): 2594-2601.
10. H.Q. Zhu, Z.F. Qin, W.J. Shan, W.J. Shen, and J.G. Wang, Pd/CeO2-TiO2 catalyst for CO oxidation at low temperature: a TPR study with H2 and CO as reducing agents, J. Catal., 2004, 225(2): 267-277.
11. A.L. Sun, S.W. Chen, Z.F. Qin, and J.G. Wang, Ethylbenzene dehydrogenation in the presence of carbon dioxide over alumina supported catalysts, Catal. Today, 2004, 93-95: 273-279.
12. A.L. Sun, Z.F. Qin, S.W. Chen, and J.G. Wang, Role of carbon dioxide in the ethylbenzene dehydrogenation coupled with water-gas shift, J. Mol. Catal. A: Chem., 2004, 210(1-2): 189-195.
13. Z.F. Qin, J.G. Liu, and J.G. Wang, Solvent effects on higher alcohols synthesis under supercritical conditions: a thermodynamic consideration, Fuel Process. Technol., 2004, 85(8-10): 1175-1192.
14. Z. F. Qin, J. G. Liu, A. L. Sun, and J.G. Wang*, Reaction coupling in the new processes for producing styrene from ethylbenzene, Ind. Eng. Chem. Res., 2003, 42(7): 1329-1333.
15. G.F. Wang, Z.F. Qin, J.G. Liu, Z. Tian, X.L. Hou, and J.G. Wang, Critical properties of the reacting mixture in the alkylation of benzene with propene, Ind. Eng. Chem. Res., 2003, 42(25): 6531-6535.
16. S.P. Yuan, J.G. Wang*, Y.W. Li, and Haijun Jiao, Br?nsted acidity of isomorphously substituted ZSM-5 by B, Al, Ga and Fe. Density functional investigations, J. Phys. Chem. A, 2002, 35(106): 8167-8172.
17. A.L. Sun, Z.F. Qin, and J.G. Wang, Reaction coupling of ethylbenzene dehydrogenation with water-gas shift, Appl. Catal. A: General, 2002, 234(1-2): 179-189.
18. J.G. Liu, Z.F. Qin, and J.G. Wang, Methanol synthesis under supercritical conditions: calculations of equilibrium conversions by using the Soave-Redlich-Kwong equation of state, Ind. Eng. Chem. Res., 2001, 40(17): 3801-3805.

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