Research Progress in Epoxidation of Light Small-Molecule Olefins

石油化工 催化作用 烯烃纤维 绿色化学 生化工程 纳米技术 化学 材料科学 有机化学 反应机理 工程类
作者
Guanghui Zhao,Tong Yang,Jincheng Liu,Xianming Xu,Yulong Wang,Yongjun Zhang,Meng Gao,Chao Xiong,Hongbing Ji
出处
期刊:Molecules [Multidisciplinary Digital Publishing Institute]
卷期号:30 (6): 1340-1340
标识
DOI:10.3390/molecules30061340
摘要

Light olefins, as important bulk raw materials in the petrochemical industry, play an irreplaceable role in the development of the manufacturing industry and the economy. The epoxides of light olefins are important intermediates for the synthesis of polymers, drugs, and fine chemicals, and their green, efficient, and safe synthesis has attracted much attention. This review focuses on the research progress of light olefin epoxidation and elucidates traditional epoxidation methods, such as the chlorohydrin method. Although these processes have mature processes, they have drawbacks, including equipment corrosion, environmental pollution, poor safety, and high waste emissions. Special emphasis is placed on catalytic epoxidation systems using oxygen or organic peroxides as oxygen sources. For homogeneous catalytic systems, certain metal complexes exhibit high activity and selectivity yet are difficult to separate and recycle. Moreover, heterogeneous catalytic systems have become a research hotspot due to their advantages of easy separation and reusability, with supported metal catalysts being a prime example. Meanwhile, the effects of reaction temperature, pressure, solvent, etc., on epoxidation are explored. The specific reaction mechanisms are also studied and analyzed. Current research challenges, including enhancing catalyst stability and reducing costs, are summarized. In the future, developing highly efficient, green, and economically viable epoxidation technologies for large-scale industrial applications represents an important research direction in this field.
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