Nagy | Basic Equations of Mass Transport Through a Membrane Layer | Buch | 978-0-12-813722-2 | sack.de

Buch, Englisch, 594 Seiten, Format (B × H): 217 mm x 279 mm, Gewicht: 1298 g

Nagy

Basic Equations of Mass Transport Through a Membrane Layer


2. Auflage 2018
ISBN: 978-0-12-813722-2
Verlag: ELSEVIER

Buch, Englisch, 594 Seiten, Format (B × H): 217 mm x 279 mm, Gewicht: 1298 g

ISBN: 978-0-12-813722-2
Verlag: ELSEVIER


Basic Equations of Mass Transport Through a Membrane Layer, Second Edition, has been fully updated to deliver the latest research in the field. This volume covers the essentials of compound separation, product removal, concentration, and production in the chemical, biochemical, pharmaceutical, and food industries. It outlines the various membrane processes and their applications, offering a detailed mathematical description of mass transport and defining basic mass transport and concentration distribution expressions. Additionally, this book discusses the process parameters and application of the expressions developed for a variety of industrial applications. Comprehensive explanations of convective/diffusive mass transport are provided, both with and without polarization layers, that help predict and process performance and facilitate improvements to operation conditions and efficiency.

Basic Equations of Mass Transport Through a Membrane Layer is an ideal resource for engineers and technologists in the chemical, biochemical, and pharmaceutical industries, as well as researchers, professors, and students in these areas at both an undergraduate and graduate level.

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Zielgruppe


<p>Engineers, technologists, technical developing engineers in the biochemical, chemical, pharmaceutical and food industry; professors at technical universities and high schools teachers as well as researchers in institutes and industries; University and high school students</p>


Autoren/Hrsg.


Weitere Infos & Material


1. Membrane Materials, Characterization, and Transport Properties2. Membrane Materials, Structures, and Modules3. Mass Transport Through a Membrane Layer4. Molecular Diffusion5. Diffusion Through a Plane Membrane Layer6. Diffusion Accompanied by Chemical Reaction Through a Plane Sheet7. Diffusive Plus Convective Mass Transport Through a Plane Membrane Layer8. Diffusive Plus Convective Mass Transport With Chemical Reaction Through a Plane Membrane Layer9. Diffusion in a Cylindrical Membrane Layer10. Mass Transport in the Presence of a Fouling Layer11. Membrane Contactors12. Transport of Fluid Phase in a Capillary Membrane13. Membrane Reactor14. Membrane Bioreactor15. Nanofiltration16. Pervaporation17. Forward Osmosis18. Membrane Gas Separation19. Membrane Distillation20. Reverse Osmosis21. Pressure-Retarded Osmosis (PRO) Process22. In Conclusion


Nagy, Endre
Endre Nagy is Scientific Adviser at the Research Institute of Biomolecular and Chemical Engineering, University of Pannonia, Hungary. His key research areas are membranes and membranes kinetics, and catalysis and biocatalysis related to the design of biocatalytic membrane systems. Emeritus Professor Nagy has contributed to almost 260 publications, 170 lectures at international conferences, and four patents.



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