On October 19th, the National Science Research Institute of Fujian Institute of Material Structure, led by the Chinese Academy of Sciences, took the task of reviewing and accepting the National Key Scientific Research Plan “Fundamental and High-efficiency Nanocatalytic Materials and Structures for Fossil Resources Transformation†held in Fuzhou. Experts in the acceptance group include academician Duan Xue of Beijing University of Chemical Technology, and Chen Rong, a member of the National Science Foundation's Chemical Science Department. Academician Hong Maozhen, chief scientist of the project organization and project, the project leader, the main academic backbone, and the science and technology management department of the project undertaking unit, etc. People attended the meeting.
At the acceptance meeting, the four project leaders discussed the controlled synthesis and structure of highly efficient nano-catalytic materials, the nano-effects and performance of selective hydrogenation catalysts for petrochemicals, and the nano-effects of high-efficiency nano-catalysts for synthesis of ethylene glycol. The study of the structure, properties and performance of the carrier, the nano-characteristics of the carrier on the catalytic performance, and the study of the mechanism of action, etc., reported the progress of the work to the participating experts and leaders. The project group focused on high-performance nanocatalytic materials involved in syngas catalytic ethylene glycol and petrochemical selective hydrogenation reactions, focusing on the nano-effects of highly efficient nanocatalytic materials and the intrinsic link between surface structure and catalytic performance. It reveals the nature of its catalytic mechanism, lays a scientific foundation for the structural design of high-stability nanocatalytic materials, and plays an important role in guiding the use of China's high reserves of coal resources for the preparation of important basic chemical raw materials and the efficient use of petroleum resources.
Through the implementation of the project, innovative new nano-catalysts have been developed. These catalysts have significant benefits in improving the efficiency of the important reaction processes that are closely related to the development of the national economy and reducing production costs; the research and development of new series of highly dispersed supported catalysts can be economized. A large number of precious metals, which greatly reduce the emission of pollutants, is of great significance to the efficient use of precious metal resources and the implementation of sustainable development strategies.
Through the report and discussion, the task acceptance expert group believes that the overall progress of the four projects of the project is good, the research plan and target for the project are completed, some of the research work has achieved more significant and innovative results, and the overall evaluation of the four projects is excellent. , Unanimously agreed to pass the project project acceptance.
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