Notice

Prof. Hong He’s group has made an important progress in Cu-based small-pore zeolites utilized for NOx catalytic purification. The corresponding results have been published in the journal of the Appl. Catal. B (2020, 266, 118655 and 2020, 264, 118511), Catal. Sci. Tehhnol. (doi.org/10.1039), and Chem. Eng. J. (2020, 388, 124250).
Congratulations to Academician Hong He for winning the National Natural Science Award(second prize)2019!
Prof. Hong He's group got an important achievement in NH3 selective catalytic reduction of NOx (NH3-SCR). The related work “Polymeric vanadyl species determine the low-temperature activity of V-based catalysts for the SCR of NOx with NH3” was published in Science Advances.
At the invitation of academician of National Academy of Engineering and Professor David y. h. Pui of University of Minnesota, academician Hong He, researcher of Center for Eco-Environmental Science of CAS, and chief scientist of Center for Excellence in Regional Atmospheric Environment of CAS, visited University of Minnesota, and made outstanding scholar report (L.M. fingerson / TSI incorporated distinguished structure) in September 2019.
Congratulations to Professor Hong He for his election as a member of the Chinese Academy of Engineering in 2017!
Congratulations to Professor Hong He on the He Liang He li Foundation Science and Technology Innovation Award 2017!
Congratulations to Professor Hong He for winning the National Science and Technology Progress Award (Second Prize) 2014!
Congratulations to Professor Hong He for winning the National Technology Invention Award (Second Prize) 2011!
The 6th International Conference on Environmental Catalysis (6th ICEC) was held at Beijing from September 12 to September 15, 2010. The 6th ICEC received a total 475 submitted abstracts and welcomed 398 active participants came from 26 countries and regions. 133 oral presentations (including 16 keynote lectures) were arranged in 8 sessions. 10 participants from China, Germany, the Netherland, Italy and Turkey won the best posters award.

Faculty

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Jinzhu Ma

Dr
Professor
Dr. Jinzhu Ma is a professor in the Eco-environment Research Center, Chinese Academy of Sciences (RCEES-CAS). Dr. Ma received his Ph.D. degree in environmental science from Research Center for Eco-Environmental Science (RCEES), Chinese Academy of Sciences (2011). He has been an assistant professor of environmental science at RCEES since 2011, and was promoted to an associate professor in 2016. He is a core Member of Innovation Team in Key Field of Innovative Talents Promotion Plan, Missions of the Ministry of Science and Technology since 2014. He is a key Member of Center for Excellence in Regional Atmospheric Environment, CAS since 2015. He is a member of the Youth Innovation Promotion Association of the Chinese Academy of Sciences since 2017. His research has mainly focused on fundamental and applied research in environmental catalysis, with a series of achievements in the areas of catalytic indoor air purification. He has successively undertaken several projects from the National Natural Science Foundation of China, the Chinese Academy of Sciences, and the Ministry of Science and Technology. He is the author of more than 70 peer-reviewed scientific publications, with over 1500 citations. 
Email:jzma@rcees.ac.cn


Research:
  Publications:
1. Fei Wang#, Jinzhu Ma#, Shaohui Xin, Qiang Wang, Jun Xu, Changbin Zhang*, Hong He, Xiaocheng Zeng*, Resolving the puzzle of single-atom silver dispersion on nanosized γ-Al2O3 surface for high catalytic performance, Nat. Commun., 2020, 11: 529.
2. Jinzhu Ma, Xiaotong Li, Changbin Zhang, Qingxin Ma*, Hong He, Novel CeMnaOx catalyst for highly efficient catalytic decomposition of ozone, Appl. Catal., B, 2020, 264: 118498.
3. Li Yang, Jinzhu Ma*, Xiaotong Li, Changbin Zhang, Hong He, Enhancing oxygen vacancies of Ce-OMS-2 via optimized hydrothermal conditions to improve catalytic ozone decomposition, Ind. Eng. Chem. Res., 2020, 59: 118-128.
4. Li Yang, Jinzhu Ma*, Xiaotong Li, Guangzhi He, Changbin Zhang, Hong He, Tuning the fill percentage in the hydrothermal synthesis process to increase catalyst performance for ozone decomposition, J Environ. Sci., 2020, 87: 60-70.

Group of Environmental Catalysis and Green Chemistry

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