From Propylene to 4‐Methyl‐1‐pentene over K‐Cu Supported Catalytically Active Liquid Metal Solutions

Author:

Chen Ping1,Ling Yu21,Tong Hongkai2,Dong Ke1,Liu Xu2,Chen Xiao2ORCID,Liang Changhai2ORCID

Affiliation:

1. Sinopec Ningbo New Material Research Institute Co. Ltd. Ningbo 315207 China

2. State Key Laboratory of Fine Chemicals and Laboratory of Advanced Materials and Catalytic Engineering School of Chemical Engineering Dalian University of Technology Dalian 116024 China

Abstract

AbstractThe urgent need for branched‐chain α‐olefin (4‐methyl‐1‐pentene) with excellent characteristics promotes the development of efficient catalysts for the selective dimerization of propylene to it. Based on the concept of supported catalytically active liquid metal solutions (SCALMS), the highly efficient K−M/K2CO3 (M=Fe, Co, Ni, Cu, and Zn) catalysts are prepared by the melting method for the dimerization of propylene. The K−Cu SCALMS catalyst presents highly efficient and excellent selective C−C linkage, as well as limits the isomerization of C6 products. The highest conversion of propylene (64.3 %) with 80.6 % selectivity to 4‐methyl‐1‐pentene with thermodynamic instability is reached at 160 °C, 6 MPa and 20 h. Furthermore, the post‐reaction K−Cu SCALMS catalyst can be successfully reactivated in the H2 atmosphere. Therefore, it is proposed that it may be achieved the continuous selective dimerization of propylene to 4‐methyl‐1‐pentene over K−Cu SCALMS catalyst by the application of fluidized bed technology.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

Wiley

Subject

General Chemistry

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