催化作用
1,3-丁二烯
化学
生化工程
过程(计算)
乙醇
单体
组合化学
偶联反应
机制(生物学)
反应条件
纳米技术
直接耦合
反应机理
生产(经济)
沸石
化学工程
联轴节(管道)
有机化学
金属
作者
Ben Yang,Kangzhou Wang,Shouqian Dong,Chenlong Huang,Qiang Wei,Xiaowei Li,Jing Wang,Jianli Zhang
标识
DOI:10.1021/acs.iecr.6c03382
摘要
Abstract Butadiene is a key monomer in the production of synthetic rubber, resins, and fine chemicals. Although significant progress has been made in the technology for the direct conversion of ethanol to butadiene (ETB), challenges remain in the development of highly efficient catalysts and the elucidation of the structure–activity relationships of supported catalysts. Furthermore, there are few systematic reviews analyzing the structure–activity relationships in the direct ETB conversion. In this review, we summarize recent advances in catalysts for direct ETB conversion and systematically analyze the relationships among metal composition, preparation method, support structure, active-site environment, and catalytic performance, and the competitive C–C coupling mechanism, reaction kinetics, catalyst deactivation, and regeneration strategies. Furthermore, we present the technical bottlenecks and future opportunities in the direct ETB conversion. This review aims to comprehensively analyze the structure–activity relationships between catalysts and catalytic performance in the direct ETB conversion, with the goal of promoting the development of efficient catalysts and accelerating the industrialization of ETB conversion.
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