On October 19, the acceptance review meeting of the National Major Scientific Research Project “Research on New and High-Efficiency Nano-Catalytic Materials and Structures for the Transformation of Fossil Resources†led by the Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences was held in Fuzhou. Experts in the acceptance team include Academician Duan Xue of Beijing University of Chemical Technology, Researcher Chen Rong of the Chemical Science Department of the National Fund Committee, Academician Hong Maochun, the project organization unit and project chief scientist, project leader, major academic backbone, and science and technology management departments of project undertaking units People attended the meeting.
At the acceptance meeting, the four project leaders respectively studied the controllable synthesis and structure of high-efficiency nano-catalyst materials, the nano-effects and properties of petrochemical selective hydrogenation catalysts, and the nano-effects of high-efficiency nano-catalyst materials for synthesis of ethylene glycol , Structure and performance research, the impact of carrier nano-characteristics on catalytic performance and the mechanism of action, etc., reported the progress of the work to the experts and leaders. The project team focused on the research on the synthesis of ethylene glycol from syngas and the high-efficiency nano-catalyst materials involved in the selective hydrogenation of petrochemicals. Revealing the essence of its catalytic mechanism lays a scientific foundation for the structural design of high-stability nano-catalyst materials, and plays an important role in making use of China's high-reserve coal resources to prepare important basic chemical raw materials and the efficient use of petroleum resources.
Through the implementation of the project, new types of nano-catalysts have been innovatively developed. These catalysts have significant benefits for improving the efficiency of important reaction processes closely related to the development of the national economy and reducing production costs; the research and development of a series of new highly dispersed supported catalysts can save A large amount of precious metals greatly reduces the discharge of pollutants, which is of great significance for the efficient use of precious metal resources and the implementation of sustainable development strategies.
Through the report and discussion, the subject acceptance expert group believes that the overall progress of the four subjects of the project is good, and the project ’s planned research plan and objectives have been completed. Some research work has achieved significant and innovative results. The comprehensive evaluation of the four subjects is excellent , Unanimously agreed to pass the acceptance of the project topic.
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