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Liquid Separations with Membranes [electronic resource] : An introduction to barrier interference / by Karl Wilhelm Böddeker.

By: Contributor(s): Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2008Description: XVI, 146 p. 40 illus. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783540474531
Subject(s): Genre/Form: Additional physical formats: Printed edition:: No titleDDC classification:
  • 660 23
LOC classification:
  • TP155-156
Online resources:
Contents:
An Introduction to Barrier Separation -- The Thermodynamic Connection -- Osmosis et cetera -- Membrane Filtration -- Pervaporation versus Evaporation -- What Membranes are About -- Tracing Membrane Science, an Historical Account.
In: Springer eBooksSummary: On the level of a textbook a self-consistent approach to liquid separations with membranes is presented, contrasting equilibrium separations with the rate-controlling effects of barrier interference on mass transfer. As a corollary objective, an effort is made to observe context, factual and historical, when introducing concepts and applications of membrane separation science. Ordering principle is the formal structure of mass transfer across barriers, being construed of a driving force (allocated to the condition of the mixtures to be separated) and a barrier permeability (holding the keys to membrane selectivity). The membranes, by this approach, appear by way of the mass transport demands which they are to meet, or else by way of the separation effects which they inspire. Learning by principles and context – exploiting barrier interference is the challenge of membrane separation science and technology. This book is about the principles behind.
Item type: eBooks
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An Introduction to Barrier Separation -- The Thermodynamic Connection -- Osmosis et cetera -- Membrane Filtration -- Pervaporation versus Evaporation -- What Membranes are About -- Tracing Membrane Science, an Historical Account.

On the level of a textbook a self-consistent approach to liquid separations with membranes is presented, contrasting equilibrium separations with the rate-controlling effects of barrier interference on mass transfer. As a corollary objective, an effort is made to observe context, factual and historical, when introducing concepts and applications of membrane separation science. Ordering principle is the formal structure of mass transfer across barriers, being construed of a driving force (allocated to the condition of the mixtures to be separated) and a barrier permeability (holding the keys to membrane selectivity). The membranes, by this approach, appear by way of the mass transport demands which they are to meet, or else by way of the separation effects which they inspire. Learning by principles and context – exploiting barrier interference is the challenge of membrane separation science and technology. This book is about the principles behind.

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