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Selection of Catalyst for the Esterification Step of the PPT Polymerization Process

✍ Scribed by Kishalay Mitra; Saptarshi Majumdar


Book ID
102495189
Publisher
John Wiley and Sons
Year
2006
Tongue
English
Weight
362 KB
Volume
15
Category
Article
ISSN
1022-1344

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✦ Synopsis


Abstract

Summary: TBOT is a proven catalyst for the esterification step of the PPT polymerization process. Previous studies have shown that the performance of TBOT is superior in terms of the enhanced degree of polymerization and shorter processing time. However, one interesting aspect which has not yet been investigated is whether with different process objectives, like by‐product minimization and controlled growth of desired functional groups, any other catalyst offers any increase in process performance. The present study gives a detailed process analysis through different sets of optimized operations, which consists basically of searching for other catalytic options for process improvements. A well validated kinetic model for the esterification step of the PPT polymerization process and the advanced Real‐Coded NSGA‐II optimization routine have been used in this study. It can be seen that with all the process considerations, such as maximization of the degree of polymerization, minimization of processing time and the enhanced controlled growth of desired functional groups and minimization of by‐products, the Zn‐based catalyst can replace the conventional Ti‐based catalyst. An Sn‐based catalyst was also found to be able to compete with these two catalysts in some cases.

Optimized Pareto plot for a study on the 4 objectives case for various catalysts. The Zn‐based catalyst outperforms the others.

magnified imageOptimized Pareto plot for a study on the 4 objectives case for various catalysts. The Zn‐based catalyst outperforms the others.


📜 SIMILAR VOLUMES


Kinetic Analysis and Optimization for th
✍ Saptarshi Majumdar; Kishalay Mitra; Gautam Sardar 📂 Article 📅 2005 🏛 John Wiley and Sons 🌐 English ⚖ 231 KB

## Abstract **Summary:** A well‐validated kinetic scheme has been studied for PPT, poly(propylene terephthalate) polymerization process in batch and semi‐batch mode with tetrabutoxytitanium (TBOT), a proven catalyst. Optimization study and analysis for PPT are rare, as the industrial relevance of P