Integrating Kinetics, Thermodynamics, and Transport in Reaction Engineering
*Corresponding Author: Carlos Estevez, Pharmaceutical Process Analytics Lab, University of São Paulo, Brazil, Email: c.estevez@usp-pat.brReceived Date: Mar 01, 2025 / Published Date: Mar 28, 2025
Citation: Carlos E (2025) Integrating Kinetics, Thermodynamics, and Transport inReaction Engineering. J Mol Pharm Org Process Res 13: 283.
Copyright: © 2025 Carlos E. This is an open-access article distributed under theterms of the Creative Commons Attribution License, which permits unrestricteduse, distribution, and reproduction in any medium, provided the original author andsource are credited.
Abstract
Reaction engineering is a multidisciplinary field that applies chemical kinetics, thermodynamics, transport phenomena, and reactor design principles to develop efficient, scalable, and safe chemical processes. It forms the foundation of process development in the chemical, petrochemical, and pharmaceutical industries. The discipline involves modeling and optimizing chemical reactors to achieve desired conversion rates, product selectivity, and energy efficiency. This article discusses the core principles of reaction engineering, various reactor types, kinetic modeling approaches, and recent advancements in computational tools and process intensification strategies.

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