Xiao Dong Chen, Aditya PutrantoCambridge University Press, 5/23/2013EAN 9781107012103, ISBN10: 1107012104Hardcover, 252 pages, 24.7 x 17.4 x 1.5 cmLanguage: EnglishThis comprehensive summary of the state of the art and the ideas behind the reaction engineering approach (REA) to drying processes is an ideal resource for researchers, academics and industry practitioners. Starting with the formulation, modelling and applications of the lumped-REA, it goes on to detail the use of the REA to describe local evaporation and condensation, and its coupling with equations of conservation of heat and mass transfer, called the spatial-REA, to model non-equilibrium multiphase drying. Finally, it summarises other established drying models, discussing their features, limitations and comparisons with the REA. Application examples featured throughout help fine-tune the models and implement them for process design and the evaluation of existing drying processes and product quality during drying. Further uses of the principles of REA are demonstrated, including computational fluid dynamics-based modelling, and further expanded to model other simultaneous heat and mass transfer processes.1. Introduction1.1. Practical background1.2. A 'microstructural' discussion of the phenomena of drying of moist porous materials1.3. The reaction engineering approach (REA) to modeling drying1.4. Summary2. Reaction Engineering Approach ILumped-REA2.1. The REA formulation2.2. Determination of REA model parameters2.3. Coupling the momentum, heat and mass balances2.4. Mass or heat transfer limiting2.5. Convective drying of particulates or thin layer products modeled using the L-REA2.6. Convective drying of thick samples modeled using the L-REA2.7. The intermittent drying of food materials modeled using the L-REA2.8. The intermittent drying under time-varying temperature and humidity modeled using the L-REA2.9. The heating of wood under linear-increased gas temperature modeled using the L-REA2.10. The baking of cake modeled using the L-REA2.11. The infrared-heating drying of a mixture of polymer solution under time-varying infrared-heating intensity modeled using the L-REA2.12. The intermittent drying of a mixture of polymer solution under time-varying infrared-heating intensity modeled using the L-REA2.13. Summary3. Reaction Engineering Approach IISpatial-REA3.1. The spatial reaction engineering approach (S-REA) formulation3.2. Determination of the S-REA parameters3.3. The S-REA for convective drying3.4. The S-REA for intermittent drying3.5. The S-REA for wood heating under constant heating rate3.6. The S-REA for baking of bread3.7. Summary4. Comparisons of the REA with Fickian-Type Drying Theories, Luikov's and Whitaker's approach4.1. Model formulation4.2. Boundary conditions' controversies4.3. Diffusion-based model with the local evaporation rate4.4. Comparison of the diffusion-based model and the L-REA on the convective drying4.5. Comparison of the diffusion-based model and the S-REA on the convective drying4.6. Model formulation of Luikov's approach4.7. Model formulation of Whitaker's approach4.8. Comparison of the L-REA, Luikov's and Whitaker's approach for modeling heat treatment of wood under constant heating rate4.9. Comparison of the S-REA, Luikov's and Whitaker's approach for modeling heat treatment of wood under constant heating rate4.10. Summary.'The REA is easy to use with the guidance of featured application examples given in this book … highly recommended for both academics and industry practitioners involved in any aspect of thermal drying.' Zhanyong Li, Tianjin University of Science and Technology'An interesting book on a novel approach to mathematical modeling of an important process … a single comprehensive reference source.' Sakamon Devahastin, King Mongkut's University of Technology Thonburi'… a profound [and] at the same time relatively easily implementable modelling approach to model and predict drying processes … a very fundamental and theoretically rigorous spatially distributed modelling approach …' Benu P. Adhikari, University of Ballarat, Australia