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During an interview with Xue Chunfeng, associate professor of the School of Chemistry and Chemical Engineering, Taiyuan University of Technology, it was learned that Xue Chunfeng's research team has made a major breakthrough in the preparation of metal organic framework material MOF-199, breaking the existing industrial synthesis of MOF-199 with low yield, many by-products, and waste liquid treatment.
green
In order to eliminate the influence of by-products on the yield of MOF-199, the research team proposed a strategy of indirect contact with by-products by introducing sodium hydroxide (AISB), and designed a sustainable no-waste emission synthesis pathway for MOF-199 .
way
According to Xue Chunfeng, in the synthesis system, sodium hydroxide can well capture and fix the by-products volatilized from the reaction system, which enhances the dynamics of the entire reaction process, thereby obtaining a higher yield.
"MOF-199 is formed by the coordination polymerization of trimellitic acid and copper nitrate.
In order to meet the above challenges, Xue Chunfeng’s research team designed a strategy to indirectly induce the transfer of by-products in alkali based on the previous accumulation in the green synthesis of porous functional materials, which achieved the high-capacity synthesis of MOF-199 and its dry-based yield.
"Through further technical research, the team has completed the MOF scale-up experiment in the laboratory, laying the foundation for realizing a ton-level daily production capacity.
As an important new type of porous material, MOF materials are widely used in catalysis, energy storage and separation.
(Keyword: Green Way)