Basic Equations of the Mass Transport through a Membrane Layer

Nonfiction, Science & Nature, Science, Chemistry, Organic, General Chemistry
Cover of the book Basic Equations of the Mass Transport through a Membrane Layer by Endre Nagy, Elsevier Science
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Endre Nagy ISBN: 9780123914255
Publisher: Elsevier Science Publication: December 7, 2011
Imprint: Elsevier Language: English
Author: Endre Nagy
ISBN: 9780123914255
Publisher: Elsevier Science
Publication: December 7, 2011
Imprint: Elsevier
Language: English

With a detailed analysis of the mass transport through membrane layers and its effect on different separation processes, this book provides a comprehensive look at the theoretical and practical aspects of membrane transport properties and functions. Basic equations for every membrane are provided to predict the mass transfer rate, the concentration distribution, the convective velocity, the separation efficiency, and the effect of chemical or biochemical reaction taking into account the heterogeneity of the membrane layer to help better understand the mechanisms of the separation processes. The reader will be able to describe membrane separation processes and the membrane reactors as well as choose the most suitable membrane structure for separation and for membrane reactor. Containing detailed discussion of the latest results in transport processes and separation processes, this book is essential for chemistry students and practitioners of chemical engineering and process engineering.

  • Detailed survey of the theoretical and practical aspects of every membrane process with specific equations
  • Practical examples discussed in detail with clear steps
  • Will assist in planning and preparation of more efficient membrane structure separation
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

With a detailed analysis of the mass transport through membrane layers and its effect on different separation processes, this book provides a comprehensive look at the theoretical and practical aspects of membrane transport properties and functions. Basic equations for every membrane are provided to predict the mass transfer rate, the concentration distribution, the convective velocity, the separation efficiency, and the effect of chemical or biochemical reaction taking into account the heterogeneity of the membrane layer to help better understand the mechanisms of the separation processes. The reader will be able to describe membrane separation processes and the membrane reactors as well as choose the most suitable membrane structure for separation and for membrane reactor. Containing detailed discussion of the latest results in transport processes and separation processes, this book is essential for chemistry students and practitioners of chemical engineering and process engineering.

More books from Elsevier Science

Cover of the book Materials for Sustainable Energy by Endre Nagy
Cover of the book Introduction to Emergency Management by Endre Nagy
Cover of the book Food Processing Technology by Endre Nagy
Cover of the book Design for Manufacturing by Endre Nagy
Cover of the book Elements of Elasticity by Endre Nagy
Cover of the book Encyclopedia of Consciousness by Endre Nagy
Cover of the book Immune Rebalancing by Endre Nagy
Cover of the book Advances in Motivation Science by Endre Nagy
Cover of the book Security Technology Convergence Insights by Endre Nagy
Cover of the book Total Colour Management in Textiles by Endre Nagy
Cover of the book Mathematical and Physical Simulation of the Properties of Hot Rolled Products by Endre Nagy
Cover of the book Self-Regulation and Ego Control by Endre Nagy
Cover of the book Woven Textiles by Endre Nagy
Cover of the book Control of Human Parasitic Diseases by Endre Nagy
Cover of the book Thermal Sensors by Endre Nagy
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy