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Gas Separation Technique by Polymeric Membranes
Details
One of the main concerns of modern society is to maintain a high standard of living and to create a sustainable future. In this context, we are facing a number of problems related to the need for more energy-efficient and environmentally friendly use of our restricted available resources. Membrane technology is seen as a potential alternative for currently used processes, because of its small footprint, its energy efficiency, and its modular design.Gas Separation through the membrane is a pressure-driven and Concentration-driven technique. The driving force is the variation in the feed and permeates area. The polymeric membranes used for this technique is dense, non-pores membranes. The performance of the membrane is measured in terms of flux, permeability and selectivity. The permeability is influenced by the penetrant gas size. Bulky gaseous molecules have a lesser diffusion coefficient. The diffusion coefficient is mainly influenced by the free volume and polymeric chain flexibility of the membrane matrix. Other aspects of the membrane-based gas separation techniques are discussed in the present book.
Autorentext
O Doutor M. B. Patil é Professor Assistente no Departamento de Química da Faculdade de Ciências de Basaveshwar, em Bagalkot, na Índia. A sua área de especialização é Membranas Poliméricas, Nanocompósitos e Física Química. Possui diversas patentes nacionais e internacionais, bem como diversas revistas de renome internacional.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786204206974
- Genre Chemistry
- Sprache Englisch
- Anzahl Seiten 68
- Herausgeber LAP LAMBERT Academic Publishing
- Größe H220mm x B150mm
- Jahr 2021
- EAN 9786204206974
- Format Kartonierter Einband
- ISBN 978-620-4-20697-4
- Titel Gas Separation Technique by Polymeric Membranes
- Autor Mallikarjunagouda Patil
- Untertitel Gas separation: basics and transport mechanisms