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Process Modeling for Polyolefin Elastomer Polymerization with an Efficient Method for Kinetic Parameter Estimation

delete2026-01-01
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PRE
AI
H
Hong, Muze
L
Li, Zhitao
L
Lai, Shanbao
Q
Qiang, Qianqian
W
Wang, Jiajun *
DOI:10.1002/mren.70006delete
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Abstract

Abstract

En 中文
A steady-state process model was developed for the solution polymerization of polyolefin elastomers (POE) using a metallocene catalyst system. The proposed model incorporates a comprehensive kinetic scheme and physical property estimations based on the PC-SAFT EOS, enabling accurate prediction of polymer properties. To address the limitations in traditional parameter fitting, an efficient estimation method based on the Nelder-Mead simplex algorithm was introduced. This optimization method allows direct fitting of pre-exponential factors and activation energies for each reaction step using plant data, improving the accuracy and speed of kinetic modeling. Model predictions under various operating conditions, including reaction temperature, residence time, and feed molar ratio, showed agreement with industrial data. This approach not only provides a reliable tool for simulating POE production but also offers a general methodology applicable to other catalytic systems with scarce kinetic data.
Keywords:
kinetic parameter estimation
metallocene catalyst
polyolefin elastomers
simplex algorithm
steady-state modeling

Journal

M
Macromolecular Reaction Engineering
IF:
1.3
Papers:
16
Citations:
0

Organization

Z
zhejiang university
Scholars:
17.4W
Papers: 12.0W
Citations: 152