Basic Equations of Mass Transport Through a Membrane Layer

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  • Publisher : Elsevier
  • Release : 05 November 2018
  • ISBN : 9780128137239
  • Page : 594 pages
  • Rating : 4.5/5 from 103 voters

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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. Cites and analyzes mass transport equations developed for different membrane processes. Examines the effect of biochemical/chemical reactions in the presence of convective and diffusive flows in plane and cylindrical spaces. Defines the mass transfer rate for first- and zero-order reactions and analytical approaches are given for other-order reactions in closed mathematical forms. Analyzes the simultaneous convective and diffusive transports with same or different directions.

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Basic Equations of Mass Transport Through a Membrane Layer

Basic Equations of Mass Transport Through a Membrane Layer
  • Author : Endre Nagy
  • Publisher : Elsevier
  • Release Date : 2018-11-05
  • ISBN : 9780128137239
GET THIS BOOKBasic Equations of Mass Transport Through a Membrane Layer

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

Basic Equations of the Mass Transport Through a Membrane Layer

Basic Equations of the Mass Transport Through a Membrane Layer
  • Author : Endre Nagy
  • Publisher : Elsevier
  • Release Date : 2012
  • ISBN : 9780124160255
GET THIS BOOKBasic Equations of the Mass Transport Through a Membrane Layer

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

Industrial Membrane Separation Technology

Industrial Membrane Separation Technology
  • Author : K. Scott,R. Hughes
  • Publisher : Springer Science & Business Media
  • Release Date : 2012-12-06
  • ISBN : 9789401106276
GET THIS BOOKIndustrial Membrane Separation Technology

Membrane science and technology is an expanding field and has become a prominent part of many activities within the process industries. It is relatively easy to identify the success stories of membranes such as desali nation and microfiltration and to refer to others as developing areas. This, however, does not do justice to the wide field of separations in which membranes are used. No other 'single' process offers the same potential and versatility as that of membranes. The word separation

Mass Transfer

Mass Transfer
  • Author : Marek Solecki
  • Publisher : BoD – Books on Demand
  • Release Date : 2015-10-22
  • ISBN : 9789535121923
GET THIS BOOKMass Transfer

This book covers a wide variety of topics related to advancements in different stages of mass transfer modelling processes. Its purpose is to create a platform for the exchange of recent observations, experiences, and achievements. It is recommended for those in the chemical, biotechnological, pharmaceutical, and nanotechnology industries as well as for students of natural sciences, technical, environmental and employees in companies which manufacture machines for the above-mentioned industries. This work can also be a useful source for researchers and

The Mathematics of Diffusion

The Mathematics of Diffusion
  • Author : John Crank,Emeritus Professor John Crank
  • Publisher : Oxford University Press
  • Release Date : 1979
  • ISBN : 0198534116
GET THIS BOOKThe Mathematics of Diffusion

Though it incorporates much new material, this new edition preserves the general character of the book in providing a collection of solutions of the equations of diffusion and describing how these solutions may be obtained.

Osmotically Driven Membrane Processes

Osmotically Driven Membrane Processes
  • Author : Hongbo Du,Audie Thompson,Xinying Wang
  • Publisher : BoD – Books on Demand
  • Release Date : 2018-03-28
  • ISBN : 9789535139218
GET THIS BOOKOsmotically Driven Membrane Processes

Osmotically driven membrane processes (ODMPs) including forward osmosis (FO) and pressure-retarded osmosis (PRO) have attracted increasing attention in fields such as water treatment, desalination, power generation, and life science. In contrast to pressure-driven membrane processes, e.g., reverse osmosis, which typically employs applied high pressure as driving force, ODMPs take advantages of naturally generated osmotic pressure as the sole source of driving force. In light of this, ODMPs possess many advantages over pressure-driven membrane processes. The advantages include low energy

Ion and Molecule Transport in Membrane Systems

Ion and Molecule Transport in Membrane Systems
  • Author : Victor Nikonenko,Natalia Pismenskaya
  • Publisher : MDPI
  • Release Date : 2021-08-10
  • ISBN : 9783036513591
GET THIS BOOKIon and Molecule Transport in Membrane Systems

Membranes play an enormous role in our life. Biological cell membranes control the fluxes of substances in and out of cells. Artificial membranes are widely used in numerous applications including “green” separation processes in chemistry, agroindustry, biology, medicine; they are used as well in energy generation from renewable sources. They largely mimic the structure and functions of biological membranes. The similarity in the structure leads to the similarity in the properties and the approaches to study the laws governing the

Biocatalytic Membrane Reactors

Biocatalytic Membrane Reactors
  • Author : Enrico Drioli,Lidietta Giorno
  • Publisher : CRC Press
  • Release Date : 2020-10-08
  • ISBN : 9781000162783
GET THIS BOOKBiocatalytic Membrane Reactors

This research level reference book has been co-written by Enrico Drioli, perhaps one of the world's best known researchers into membrane technology. The application of membrane technology to chemical transformation and molecular separation are beginning to be exploited in the pharmaceutical science and biotechnology industries, but there is a need for researchers and students to have up-to-date literature - and this book provides it. The book will be of interest to students of chemistry, chemical engineering, pharmacy and biotechnology.

Liquid Membranes

Liquid Membranes
  • Author : Vladimir S Kislik
  • Publisher : Elsevier
  • Release Date : 2009-08-31
  • ISBN : 0080932568
GET THIS BOOKLiquid Membranes

Liquid Membranes: Principles and Applications in Chemical Separations and Wastewater Treatment discusses the principles and applications of the liquid membrane (LM) separation processes in organic and inorganic chemistry, analytical chemistry, biochemistry, biomedical engineering, gas separation, and wastewater treatment. It presents updated, useful, and systematized information on new LM separation technologies, along with new developments in the field. It provides an overview of LMs and LM processes, and it examines the mechanisms and kinetics of carrier-facilitated transport through LMs. It also

Diffusion

Diffusion
  • Author : E. L. Cussler
  • Publisher : Cambridge University Press
  • Release Date : 2009-01-15
  • ISBN : 9781139474214
GET THIS BOOKDiffusion

This overview of diffusion and separation processes brings unsurpassed, engaging clarity to this complex topic. Diffusion is a key part of the undergraduate chemical engineering curriculum and at the core of understanding chemical purification and reaction engineering. This spontaneous mixing process is also central to our daily lives, with importance in phenomena as diverse as the dispersal of pollutants to digestion in the small intestine. For students, Diffusion goes from the basics of mass transfer and diffusion itself, with strong

Mass Transfer Models in Membrane Processes

Mass Transfer Models in Membrane Processes
  • Author : Manfred Raff
  • Publisher : Springer Nature
  • Release Date : 2022-06-25
  • ISBN : 9783030891954
GET THIS BOOKMass Transfer Models in Membrane Processes

Membrane Technology and Applications

Membrane Technology and Applications
  • Author : Richard W. Baker
  • Publisher : John Wiley & Sons
  • Release Date : 2004-05-31
  • ISBN : 0470854456
GET THIS BOOKMembrane Technology and Applications

Table of Contents Preface Acknowledgments for the first edition Acknowledgments for the second edition 1 Overview of Membrane Science and Technology 1 2 Membrane Transport Theory 15 3 Membranes and Modules 89 4 Concentration Polarization 161 5 Reverse Osmosis 191 6 Ultrafiltration 237 7 Microfiltration 275 8 Gas Separation 301 9 Pervaporation 355 10 Ion Exchange Membrane Processes - Electrodialysis 393 11 Carrier Facilitated Transport 425 12 Medical Applications of Membranes 465 13 Other Membrane Processes 491 Appendix 523 Index 535.

Cell Biology by the Numbers

Cell Biology by the Numbers
  • Author : Ron Milo,Rob Phillips
  • Publisher : Garland Science
  • Release Date : 2015-12-07
  • ISBN : 9781317230694
GET THIS BOOKCell Biology by the Numbers

A Top 25 CHOICE 2016 Title, and recipient of the CHOICE Outstanding Academic Title (OAT) Award. How much energy is released in ATP hydrolysis? How many mRNAs are in a cell? How genetically similar are two random people? What is faster, transcription or translation?Cell Biology by the Numbers explores these questions and dozens of others provid

Principles and Modern Applications of Mass Transfer Operations

Principles and Modern Applications of Mass Transfer Operations
  • Author : Jaime Benitez
  • Publisher : John Wiley & Sons
  • Release Date : 2016-12-16
  • ISBN : 9781119276944
GET THIS BOOKPrinciples and Modern Applications of Mass Transfer Operations

A staple in any chemical engineering curriculum New edition has a stronger emphasis on membrane separations, chromatography and other adsorptive processes, ion exchange Discusses many developing topics in more depth in mass transfer operations, especially in the biological engineering area Covers in more detail phase equilibrium since distillation calculations are completely dependent on this principle Integrates computational software and problems using Mathcad Features 25-30 problems per chapter

Modelling and Simulation of Nanofiltration Membranes

Modelling and Simulation of Nanofiltration Membranes
  • Author : Gamze Artug
  • Publisher : Cuvillier Verlag
  • Release Date : 2007-12-07
  • ISBN : 9783736924468
GET THIS BOOKModelling and Simulation of Nanofiltration Membranes

Nanofiltration (NF) is a relatively recent membrane process and offers a plethora of application areas due to its selective removal for ions and removal of organic matter above 200 g/mol molar mass. Application fields enlarged substantially in the last 25 years. Accordingly, there is an increasing need for process design and optimisation tools. Therefore, current research studiesfocus on a better understanding of mass transport phenomenon as well as the application and enhancement of the existing models to the real process streams.