Kinetic Modeling of Ethylene Oligomerization to High-Chain-Length Olefins Over Al-SBA-15-Supported Ni Catalyst with LiAlH₄ Co-catalyst

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초록

Kinetic modeling of ethylene oligomerization was performed; an Al-SBA-15-supported Ni catalyst and LiAlH4 co-catalyst were used to produce high-chain-length olefins in a one-pot reaction. A semi-batch slurry reactor produced kinetic data at different feed flow rates and temperatures. Grouping of the kinetic and mass transfer coefficients concerning the products was introduced to estimate undetermined parameters with limited experimental data. Among the four combinatorial cases, the estimation of individual kinetic parameters and grouped mass transfer coefficients showed the lowest errors and Akaike's information criteria. The activation energies for the formation of hexene and octene were determined to be approximately 15 and 45 kJ/mol, respectively, confirming reported values of 23.1-64.1 kJ/mol. The model showed that the formation of short-chain-length olefins accounted for the rate-determining steps, and the evaluation for the effects of operating conditions guided optimal operation; high temperature and feed flow rate maximized heavy species production, and the flow rate should be optimized to maximize light olefin production.

키워드

Ethylene oligomerizationSemi-batch slurry reactorKinetic modelingParameter estimationHeavy olefinsHETEROGENEOUS OLIGOMERIZATIONSLURRY REACTORZSM-5 ZEOLITESALPHA-OLEFINSTETRAMERIZATIONETHENETRANSFORMATIONINSIGHTS
제목
Kinetic Modeling of Ethylene Oligomerization to High-Chain-Length Olefins Over Al-SBA-15-Supported Ni Catalyst with LiAlH₄ Co-catalyst
저자
Woo, YesolShin, MiSuh, Young-WoongPark, Myung-June
DOI
10.1007/s11144-021-01939-4
발행일
2021-02
유형
Article; Early Access
저널명
Reaction Kinetics, Mechanisms and Catalysis
132
1
페이지
499 ~ 511