2020 Virtual AIChE Annual Meeting
(314g) Modeling and Optimization of Industrial Ethylene Oxide Reactor for Deploying Real-Time Optimization Control Layer
Authors
This presentation will highlight the modeling steps for optimizing EO reactor in the EO/EG Plant. The determination of the initial catalyst activity will be discussed in detail. It has been shown that the activity of the commercial catalyst varies through the earlier stage of its lifetime. Thus, the reactor will be modeled according to the Start-of-Run (SOR) conditions since this model will be used for real-time optimization (RTO). The modeling strategies will take into consideration the heat transfer coefficients and pressure drops in the reactor system. A pool boiling model for the organic coolant system, which is very important to predict catalyst bed temperatures, will be addressed. Data reconciliation (DR) on the results of the industrial gas chromatography measurements will be introduced. The model-based DR approach that was used in both parallel reactors will be explained. The connection between the lab-rig model and the industrial reactor model in the gPROMS Process Builder will be elucidated. Finally, optimization strategies for effectively handling critical control parameters in the EO reactor will be discussed.