Transport phenomena for chemical reactor design / Laurence A. Belfiore
Tipo de material: TextoDetalles de publicación: New York : J. Wiley, ©2003Descripción: xxv, 884 páginas : ilustraciones ; 24 x 15 centímetrosTipo de contenido:- texto
- sin medio
- volumen
- 0471202754 (cloth : alk. paper)
- TP 156 .T7 B42 2003
Tipo de ítem | Biblioteca actual | Biblioteca de origen | Colección | Signatura topográfica | Copia número | Estado | Notas | Fecha de vencimiento | Código de barras | Reserva de ítems | |
---|---|---|---|---|---|---|---|---|---|---|---|
Libros para consulta en sala | Biblioteca Antonio Enriquez Savignac | Biblioteca Antonio Enriquez Savignac | COLECCIÓN RESERVA | TP 156 .T7 B42 2003 (Navegar estantería(Abre debajo)) | 1 | No para préstamo | Ing. Industrial | 035974 |
Incluye referencias bibliográficas: páginas 861-864 e índice
Part I: elementary topics in chemical reactor design -- Part II: transport phenomena: fundamentals and applications -- Part III: kinetics and elementary surface science -- Part IV: mass transfer and chemical reaction in isothermal catalytic pellets -- Part V: isothermal chemical reactor design -- Part VI: thermodynamics and nonisothermal reactor design
" Transport Phenomena for Chemical Reactor Design approaches the design of chemical reactors from microscopic heat and mass transfer principles. It includes simultaneous consideration of kinetics and heat transfer, both critical to the performance of real chemical reactors. Complementary topics in transport phenomena and thermodynamics that provide support for chemical reactor analysis are covered, including: -Fluid dynamics in the creeping and potential flow regimes around solid spheres and gas bubbles -The corresponding mass transfer problems that employ velocity profiles, derived in the book's fluid dynamics chapter, to calculate interphase heat and mass transfer coefficients -Heat capacities of ideal gases via statistical thermodynamics to calculate Prandtl numbers -Thermodynamic stability criteria for homogeneous mixtures that reveal that binary molecular diffusion coefficients must be positive ". -- P. [4]
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