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Membrane filtration = a problem solv...
~
Foley, Greg, (1963-)
Membrane filtration = a problem solving approach with MATLAB /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Membrane filtration/ Greg Foley.
Reminder of title:
a problem solving approach with MATLAB /
Author:
Foley, Greg,
Published:
Cambridge :Cambridge University Press, : 2013.,
Description:
xvii, 327 p. :ill., digital ; : 24 cm.;
Subject:
Membrane separation. -
Online resource:
https://doi.org/10.1017/CBO9781139236843
ISBN:
9781139236843
Membrane filtration = a problem solving approach with MATLAB /
Foley, Greg,1963-
Membrane filtration
a problem solving approach with MATLAB /[electronic resource] :Greg Foley. - Cambridge :Cambridge University Press,2013. - xvii, 327 p. :ill., digital ;24 cm.
Focusing on the application of membranes in an engineering context, this hands-on computational guide makes previously challenging problems routine. It formulates problems as systems of equations solved with MATLAB, encouraging active learning through worked examples and end-of-chapter problems. The detailed treatments of dead-end filtration include novel approaches to constant rate filtration and filtration with a centrifugal pump. The discussion of crossflow microfiltration includes the use of kinetic and force balance models. Comprehensive coverage of ultrafiltration and diafiltration processes employs both limiting flux and osmotic pressure models. The effect of fluid viscosity on the mass transfer coefficient is explored in detail, the effects of incomplete rejection on the design and analysis of ultrafiltration and diafiltration are analysed, and quantitative treatments of reverse osmosis and nanofiltration process analysis and design are explored. Includes a chapter dedicated to the modelling of membrane fouling.
ISBN: 9781139236843Subjects--Topical Terms:
677819
Membrane separation.
LC Class. No.: TP248.25.M46 / F65 2013
Dewey Class. No.: 660.284245
Membrane filtration = a problem solving approach with MATLAB /
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a problem solving approach with MATLAB /
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Greg Foley.
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2013.
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Focusing on the application of membranes in an engineering context, this hands-on computational guide makes previously challenging problems routine. It formulates problems as systems of equations solved with MATLAB, encouraging active learning through worked examples and end-of-chapter problems. The detailed treatments of dead-end filtration include novel approaches to constant rate filtration and filtration with a centrifugal pump. The discussion of crossflow microfiltration includes the use of kinetic and force balance models. Comprehensive coverage of ultrafiltration and diafiltration processes employs both limiting flux and osmotic pressure models. The effect of fluid viscosity on the mass transfer coefficient is explored in detail, the effects of incomplete rejection on the design and analysis of ultrafiltration and diafiltration are analysed, and quantitative treatments of reverse osmosis and nanofiltration process analysis and design are explored. Includes a chapter dedicated to the modelling of membrane fouling.
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https://doi.org/10.1017/CBO9781139236843
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