Evaluation of Process Control Schemes for Sour Water Strippers in Petroleum Refining

Author:

Ho Chii-Dong,Chen Yih-HangORCID,Chang Chao-Min,Chang Hsuan

Abstract

For the sour water strippers in petroleum refinery plants, three prediction models were developed first, including the estimators of sour water feed concentrations using convenient online measurements, the minimum reboiler duty and the corresponding internal temperature at a specific location (Tstage,29). Feedforward control schemes were developed based on these prediction models. Four categories of control schemes, including feedforward, feedback, feedback with external reset, and feedforward-feedback, were proposed and evaluated by the rigorous dynamic simulation model of the sour water stripper for their dynamic responses to the sour water feed stream disturbances. The comparison of control performance, in terms of the settling time, integrated absolute error (IAE) of the NH3 concentration of the stripped sour water and IAE of the specific reboiler duty, reveals that FFT (feedforward control of Tstage,29) and FBA-DT3 (feedback control with 3 min concentration measurement delay) are the best control schemes. The second-best control scheme is FBAT (cascade feedback control of concentration with temperature).

Funder

Ministry of Science and Technology of Taiwan

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference20 articles.

1. Estimation of U.S. refinery water consumption and allocation to refinery products

2. Configuration study and design of sour water stripper units for a refinery revamp;Das;Hydrocarb. Process.,2018

3. Sour Water Strippers: Design and Operationwww.digitalrefining.com/article/1000799

4. Development of a novel processing system for efficient sour water stripping

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