Modeling and Parameter Estimation for Gas‐Phase Polyethylene Product Properties Using Dynamic and Steady‐State Data

Author:

Gibson Lauren A.1,Jiang Yan2,Boller Timothy2,Chiang Hsu2,McAuley Kimberley B.1ORCID

Affiliation:

1. Department of Chemical Engineering Queen's University Kingston ON K7L 3N6 Canada

2. ExxonMobil Product Solutions Company – Technology Division Baytown Technology & Engineering Complex 5200 Bayway Dr. Baytown TX 77520 USA

Abstract

AbstractModels are developed for gas‐phase ethylene/1‐hexene copolymerization using a 3‐site hafnocene catalyst. The models accurately predict joint molecular weight distribution and copolymer composition data for 15 semibatch lab‐scale copolymerization runs and 6 steady‐state pilot‐plant copolymerization runs, respectively. Kinetic rate constants and activation energies, which are common to both models, are estimated for the three types of active sites for each reaction in the kinetic scheme. Using parameter subset selection and estimation techniques, it is found that 34 of the 61 parameters should be estimated from the data. Incorporating the pilot‐plant data allow for estimation of two parameters, a deactivation rate constant and a β‐hydride elimination activation energy, that are not estimable using the lab‐scale data alone. At the 95% confidence level, 25 of the 34 parameters are significantly different than zero, which is more than the 19 significant parameter estimates obtained from the lab‐scale data alone. Good fits to the data are obtained, as are reliable predictions for a validation run not used in parameter estimation.

Publisher

Wiley

Subject

Polymers and Plastics,General Chemical Engineering,General Chemistry

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