Xiangping Zhang
xpzhang@ipe.ac.cn
Chinese, English
Beijing
University of Chinese Academy of Sciences
Chemistry and Chemical Engineering
  • 1999/04-2002/04 PhD in Chemical Engineering, Dalian University of Technology
  • 1991/09-1994/07 Master's in Zhengzhou University (formerly Zhengzhou Institute of Technology)
  • 1987/09-1991/07 Bachelor's in Zhengzhou University (formerly Zhengzhou Institute of Technology)
  • 2010/11-Present Researcher and Doctoral Supervisor, Institute of Process Engineering, Chinese Academy of Sciences
  • 2008/05-2010/10 Project Researcher and Doctoral Supervisor, Institute of Process Engineering, Chinese Academy of Sciences
  • 2004/07-2008/04 Associate Researcher and Master's Supervisor, Institute of Process Engineering, Chinese Academy of Sciences
  • 2006/08-2007/08 Visiting Scholar, Norwegian University of Science & Technology
  • 2002/04-2004/06 Postdoctoral Researcher, Institute of Process Engineering, Chinese Academy of Sciences
  • 1994/07-1999/03 Lecturer, Zhengzhou University (formerly Zhengzhou Institute of Technology)
  • 2019 Min Enze Energy Chemical Award for Outstanding Contribution
  • 2019 Hou Debang Chemical Technology Achievement Award
  • 2018 Advanced Individual in Women's Achievements of the Chinese Academy of Sciences
  • 2016 Hou Debang Chemical Science Innovation Award
  • 2015 Outstanding Reviewer of the Year, Chinese Society of Chemical Industry
  • 2013 Nomination for the Fourth Top Ten Outstanding Women of the Chinese Academy of Sciences
  • 2012 First 'Top Ten Employees' of the Institute of Process Engineering, Chinese Academy of Sciences
  • 2010 Second Prize of the National Natural Science Award, Study on the Structure-Activity Relationship of Ionic Liquids and Chemical Engineering Basics
  • 2009 First Prize of Science and Technology Progress by the China Petroleum and Chemical Industry Association, Basic Research on the Structure, Properties and Applications of Ionic Liquids
  • 2008 Second Prize of Technical Invention by the China Petroleum and Chemical Industry Association, Clean Process Technology for Replacing Toxic and Harmful Raw Materials/Media Methyl Methacrylate
  • 2007 Second Prize of Beijing Science and Technology Award, Scale Production and Clean Process Technology of Ionic Liquids
Green process system integration and greenness analysis
Chemical thermodynamics and process simulation optimization
Design of novel media/materials such as ionic liquids
Development of clean process technologies for gas separation and purification
  • A Mn-N3 single-atom catalyst embedded in graphitic carbon nitride for efficient CO2 electroreduction, Feng J. Q., Gao H. S., Zheng L. R., Chen Z. P., Zeng S. J., Jiang C. Y., Dong H. F., Liu L. C., Zhang S. J., Zhang X. P., 2020
  • Structure optimization of tailored ionic liquids and process simulation for shale gas separation, Liu, X. Y., Chen, Y. Q., Zeng, S. J., Zhang, X. P., Zhang, S. J., Liang, X. D., Gani, R., Kontogeorgis, G. M., 2020
  • Morphology Modulation-Engineered Flowerlike In2S3 via Ionothermal Method for Efficient CO2 Electroreduction, Feng, J. Q., Gao, H. S., Feng, J. P., Liu, L., Zeng, S. J., Dong, H. F., Bai, Y. G., Liu, L. C., Zhang, X. P., 2020
  • Strategy Combining Free Volume Theory and Fragment Contribution Corresponding State Method for Predicting Viscosities of Ionic Liquids, Tu, W. H., Zeng, S. J., Zhang, X. C., He, X. Z., Liu, L., Zhang, S. J., Zhang, X. P., 2019
  • Selective Separation of Methacrylic Acid and Acetic Acid from Aqueous Solution Using Carboxyl-Functionalized Ionic Liquids, Bai, Y. G., Yan, R. Y., Tu, W. H., Qian, J. G., Gao, H. S., Zhang, X. P., Zhang, S. J., 2018
  • Efficient and reversible absorption of ammonia by cobalt ionic liquids through Lewis acid-base and cooperative hydrogen bond interactions, Zeng, S. J., Liu, L., Shang, D. W., Feng, J. P., Dong, H. F., Xu, Q. X., Zhang, X. P., Zhang, S. J., 2018
  • Ionic-Liquid-Based CO2 Capture Systems: Structure, Interaction and Process, Zeng, S. J., Zhang, X. P., Bai, L., Zhang, X. C., Wang, H., Wang, J. J., Bao, D., Li, M. D., Liu, X. Y., Zhang, S. J., 2017
  • Energetic-environmental-economic assessment of the biogas system with three utilization pathways: Combined heat and power, biomethane and fuel cell, Wu, B., Zhang, X., Shang, D., Bao, D., Zhang, S., Zheng, T., 2016
  • Post-combustion carbon capture technologies: Energetic analysis and life cycle assessment, Zhang, X. P., Singh B, He, X. Z., Gundersen T, Deng, L. Y., Zhang, S. J., 2014
  • Carbon chain analysis on a coal IGCC — CCS system with flexible multi-products, Zhang, X. P., Gundersen, T., Roussanaly, S., Brunsvold, A. L., Zhang, S. J., 2013
  • Carbon capture with ionic liquids: overview and progress, Zhang, X. P., Zhang, X. C., Dong, H. F., Zhao, Z. J., Zhang, S. J., Huang, Y., 2012
  • Exergy analysis of the process for dimethyl ether production through biomass steam gasification, Zhang, X. P., Solli, C., Hertwich, E. G., Tian, X., Zhang, S. J., 2009
  • Model-centered approach to early planning and design of an eco-industrial park around an oil refinery, Zhang, X. P., Stromman, A. H., Solli, C., Hertwich, E. G, 2008
  • Environmental impact assessment of chemical process using the green degree method, Zhang, X. P., Li, C. S., Fu, C., Zhang, S. J., 2008
  • Prediction of solubility of lysozyme in lysozyme-NaCl-H2O system with artificial neural network, Zhang, X. P., Zhang, S. J., He, X. Z., 2004
Green Process System Integration Greenness Analysis Chemical Thermodynamics Process Simulation Optimization Ionic Liquids Media Design Material Design Gas Separation

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