极速飞艇

袁渭康(工程院院士)

袁渭康:院士 教授

  

袁渭康,1935年7月生于上海。华东化工学院1957年毕业,1962年研究生毕业,同年起在北京化工学院任教,直至1973年进入极速飞艇至今。历任极速飞艇化学工程系主任,化学反应工程研究所所长。其间1979-1981美国麻省理工学院访问学者,1989丹麦技术大学客座教授,1990美国弗吉尼亚大学客座教授。1995年当选为中国工程院院士。现为化学工程联合国家重点实验室学术委员会主任。


长期从事化学工程研究,以化学反应工程为主要方向。在应用基础研究方面的工作涉及催化反应工程及多相反应工程,反应器模型化及动态学,以及电化学反应器等。在反应器的研究开发方面,创导了工业反应过程开发方法的主要思想,并成功主持了几个重要的工程应用项目。曾数度获国家及部委奖励,获何梁何利科技进步奖。


积极推动国际学术交流。1992年创议成立亚太化学反应工程工作委员会并任首任主席,组织地区学术活动。该委员会现已被公认为是平行于北美和欧洲在本领域中三个国际组织之一。1998年创建中法化学与环境工程联合实验室并任中方负责人。该实验室目前有双方12个实验室参加,运行良好。

当前研究方向:反应器工程,非传统反应工程。

主要教学科研成果

【论文发表情况】    

极速飞艇1. Adsorption of benzene and cyclohexane on gamma-Al2O3 and Pd/gamma-Al2O3 at elevated temperature and pressure

极速飞艇Chemical Engineering Journal, 136(2-3):414-418, 2008.03.01

 2. Zeta potential on the anti-scalant modified sub-micro calcite surface

Colloids and Surfaces A-Physicochemical and Engineering Aspects, 328(1-3):60-66, 2008.10.01

极速飞艇3. Oxygen reduction reaction properties of carbon nanofibers: Effect of metal purification

ElectrochimicaL ACTA, 53(10):3587-3596, 2008.04.01

极速飞艇4. Adsorption of ammonia on activated carbon from aqueous solutions

Environmental Progress, 27(2):225-233, 2008.07

5. In situ FT-IR spectroscopic study on the conformational changes of isotactic polypropylene in the presence of supercritical CO2

European Polymer Journal, 44(8):2619-2624, 2008.08

极速飞艇6. Pyrolysis gasoline hydrogenation in the second-stage reactor: Reaction kinetics and reactor simulation

Industrial & Engineering Chemistry Research, 7(4):1051-1057, 2008.02.20

7. Platinum/carbon nanofiber nanocomposite synthesized by electrophoretic deposition as electrocatalyst for oxygen reduction

极速飞艇Journal of Power Sources, 175(1):211-216, 2008.01.03

极速飞艇8. Effect of supercritical carbon dioxide-assisted nano-scale dispersion of nucleating agents on the crystallization behavior and properties of polypropylene

极速飞艇Journal of Supercritical Fluids, 44(3):446-456, 2008.04

极速飞艇9. Synthesis and characterization of titanium silicate-1 supported on carbon nanofiber

Microporous and Mesoporous Materials, 108(1-3):311-317, 2008.02.01

10. Supercritical carbon dioxide-induced melting temperature depression and crystallization of syndiotactic polypropylene

极速飞艇Polymer Engineering and Science, 48(8):1608-1614, 2008.08

极速飞艇11. Kinetics for the simultaneous removal of NO and SO2 with cobalt ethylenediamine solution

Separation and Purification Technology, 58(3):328-334, 2008.01

极速飞艇12. Kinetics for the simultaneous absorption of nitric oxide and sulfur dioxide with the hexamminecobalt solution

Separation and Purification Technology, 62(1):183-191, 2008.08

极速飞艇13. Microstructure effect of carbon nanofiber on electrocatalytic oxygen reduction reaction

Catalysis Today, 131(1-4):270-277, 2008.02.29

14. Determination of catalyst wetting fraction on the molecular level

极速飞艇AIChE Journal, 53(3):741-745, 2007.03

15. Process flow diagram of an ammonia plant as a complex network

AIChE Journal, 53(2):423-428, 2007.02

极速飞艇16. Effects of microstructure of carbon nanofibers for amperometric detection of hydrogen peroxide

Analytica Chimica Acta, 597(2):238-244, 2007.08

17. Rational design of the carbon nanofiber catalysts for oxidative dehydrogenation of ethylbenzene

Applied Catalysis A-Geeral, 323:135-146, 2007.04.30

18. Characterization of surface oxygen complexes on carbon nanofibers by TPD, XPS and FT-IR

Carbon, 45(4):785-796, 2007.04

19. First-principles Study of Carbon Diffusion in Bulk Nickel during the Growth of Fishbone-type Carbon Nanofibers

极速飞艇Carbon, 45(1):21-27, 2007.01

20. Kinetics of the selective hydrogenation of pyrolysis gasoline

Chemical Engineering & Technology, 30(1):105-111, 2007.01

极速飞艇21. Peroxidization of methyl ethyl ketone in a microchannel reactor

极速飞艇Chemical Engineering Science, 62(18-20):5127-5132,2007.10

22. Modelling of the kinetics of the Supercritical CO2 Assisted Grafting of Maleic Anhydride onto Isotactic Polyropylene in the Solid State

极速飞艇Chemical Engineering Science, 62(18-20):5290-5294,2007.10

23. Targeting the dominating-scale structure of a multiscale complex system: A methodological problem

Chemical Engineering Science, 62(13):3335-3345,2007.07

极速飞艇24. Effect of carbon nanofiber microstructure on oxygen reduction activity of supported palladium electrocatalyst

Electrochemistry Communications, 9(5):895-900, May 2007

25. Evaluation on the Dependence of Multiphase Flow and Reaction upon the Morphology of Porous Media Network

Industrial & Engineering Chemistry Research, 46(25):8459-8470, 2007.12

极速飞艇26. First-principles calculations of CH4 dissociation on Ni(1 0 0) surface along different reaction pathways

Journal of Molecular Catalysis A: Chemical, 264(1-2):299-308, 2007.03

极速飞艇27. Effect of Zn2+/Zn layer on H-2 dissociation on Ruthenium (0001) surface: A first principles density functional study

Journal of Molecular Structure-Theochem, 807 (1-3): 185-189 APR 1 2007

极速飞艇28. First-principles study of C adsorption and diffusion on the surfaces and in the subsurfaces of nonreconstructed and reconstructed Ni(100)

Journal of Physical Chemistry C, 111(8):3447-345, 2007.03

29. Supercritical carbon dioxide-assisted solid-state free radical grafting of methyl methacrylate onto polypropylene

极速飞艇Journal of Supercritical Fluids, 43(1):64-73, 2007.11

30. Foaming of polypropylene with supercritical carbon dioxid

Journal of Supercritical Fluids, 41(2):299-310, June 2007

极速飞艇31. Nitric oxide absorption into cobalt ethylenediamine solution

Separation and Purification Technology, 55(2):226-231, Jun15 2007

32. First-principles study of C chemisorption and diffusion on the surface and in the subsurfaces of Ni(1 1 1) during the growth of carbon nanofibers

极速飞艇Surface Science, 601(5):1319-1325, 2007.03

33. Rational Design of the Carbon Nanofiber Catalysts for Oxidative Dehydrogenation of Ethylbenzene

Topics in Catalysis, 45(1-4):87-91, AUG 2007

【研究方向】

极速飞艇1.催化剂和催化反应过程:催化新材料与催化剂制备,非均相催化反应过程开发

2.超临界流体技术:超临界聚合物加工,超临界反应,近临界水反应等。

极速飞艇3.反应器的非定态行为与动态操作:换向固定床反应器,强制振荡多相流反应器,电流振荡电化学反应器等。 


【联系方式】 

电话:64252884

Email:wkyuan@pdzcgongsi.com

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