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Titlebook: Industrial Membrane Separation Technology; K. Scott,R. Hughes (Chairman) Book 1996 Chapman & Hall 1996 electrodialysis.filtration.separati

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Book 1996on and stripping, as well as separations of the physical type such as filtration. Synthetic membranes are an integral part of devices for analysis, energy generation and reactors (cells) in the electrochemical industry.
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wn in Fig. 7. It has been implied that the load at which collapse occurs, λ . in Fig. 7(a), is obtained from a nonlinear analysis with use of a computer program for general shells such as STAGS [48] or a computer program for shells of revolution such as BOSOR [47]. The bifurcation load, λ . in Fig.
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Overview of the application of synthetic membrane processes,resent as a number of phases and those where species are dissolved in a single phase. Membranes can be used to achieve both types of separations through their ability to perform one or more of the following functions:
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Membrane equipment and plant design,nt ranges in scale from standard skid mounted units of under 5 m. membrane area, to specially designed systems with over 5000 m. membrane area. At the heart of all such systems are the membranes. These, however, are only one of many components that make up the whole plant. As well as the mechanical
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Applications in gas and vapour phase separations,al membrane materials may be divided into two broad classes, namely polymeric and inorganic membranes. Polymer membranes have so far been those which have been widely adopted for gas separation, but with increasing process demands for separating gas mixtures at temperatures higher than the thermal l
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