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Jianguo Wang
Chemistry and Chemical Engineering
University of Chinese Academy of Sciences
Beijing
Language: Chinese, German
Contact
Catalysis Methanol Synthesis Gas Adsorption Separation Purification Mesoporous Materials Material Science Chemical Engineering Reaction Engineering
Areas of Focus
  • Multiphase catalysis
  • Methanol catalytic conversion
  • Theoretical catalysis
  • Catalyst preparation engineering
  • Synthesis gas catalytic conversion
  • Adsorption separation and purification
  • Mesoporous material preparation and application
Work Experience
  • 2019-11 to present, University of Chinese Academy of Sciences, Distinguished Professor
  • 1998-09 to 2019-11, Shanxi Institute of Coal Chemistry, Chinese Academy of Sciences, Researcher
  • 1996-04 to 1998-06, University of Erlangen, Germany, Humboldt Scholar
  • 1991-09 to 1995-08, Shanxi Institute of Coal Chemistry, Chinese Academy of Sciences, PhD Student
  • 1990-07 to 1991-08, Taiyuan University of Technology, Lecturer
  • 1988-07 to 1990-06, Taiyuan University of Technology, Assistant
Academic Background & Achievements
  • 1991-09--1995-08 PhD: Shanxi Institute of Coal Chemistry, Chinese Academy of Sciences
  • 1985-09--1988-06 Master's: Lanzhou University
  • 1981-09--1985-06 Bachelor's: Lanzhou University
Publications
  • Improvement of the catalytic performance of ITQ-13 zeolite in methanol to olefins via Ce modification, Corresponding Author, 2023
  • Effective conversion of CO2 into light olefins along with generation of low amounts of CO, Corresponding Author, 2022
Awards
  • 2016 First Prize: Structural, compositional and performance regulation of zeolite catalysts
  • 2011 Second Prize: High-efficiency low-temperature oxidation catalyst and process for carbon monoxide
  • 2011 First Prize: Key technology R&D and industrial demonstration application of high-temperature fluidized bed coal-to-oil
  • 2010 Zhu Li Yuehua Excellent Teacher Award, Chinese Academy of Sciences
  • 2006 Second Prize: Theoretical and experimental studies of new catalytic reaction technologies
  • 2004 Second Prize: Structural and adsorption/catalytic performance of zeolites
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