Membrane Formation and Modification

Author:   Ingo Pinnau ,  Benny Freeman (North Carolina University)
Publisher:   American Chemical Society
Volume:   744
ISBN:  

9780841236042


Pages:   288
Publication Date:   27 January 2000
Format:   Hardback
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

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Membrane Formation and Modification


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Full Product Details

Author:   Ingo Pinnau ,  Benny Freeman (North Carolina University)
Publisher:   American Chemical Society
Imprint:   American Chemical Society
Volume:   744
Dimensions:   Width: 16.00cm , Height: 2.30cm , Length: 23.60cm
Weight:   0.590kg
ISBN:  

9780841236042


ISBN 10:   0841236046
Pages:   288
Publication Date:   27 January 2000
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   No Longer Our Product
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

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Overviews recent developments related to novel membrane materials, membrane fabrication methods, and membrane modification techniques that together have made processes using artificial membranes competitive with conventional separation methods such as distillation in a wide variety of large-scale industrial applications. The 22 papers, from a September 1997 symposium in Las Vegas, explore such aspects as forming anisotropic and asymmetric membranes by thermally- induced phase separation, the effect of surfactant as an additive on the formation of asymmetric polysulfone membranes for gas separation, a post-synthesis method for developing membranes using the ion-beam irradiation of polyimide thin films, facilitated transport membranes incorporating metal affinity for recovering amino acids, and preparing carbon molecular sieve membranes and their gas separation properties.--SciTech Book News


<br> Overviews recent developments related to novel membrane materials, membrane fabrication methods, and membrane modification techniques that together have made processes using artificial membranes competitive with conventional separation methods such as distillation in a wide variety of large-scale industrial applications. The 22 papers, from a September 1997 symposium in Las Vegas, explore such aspects as forming anisotropic and asymmetric membranes by thermally- induced phase separation, the effect of surfactant as an additive on the formation of asymmetric polysulfone membranes for gas separation, a post-synthesis method for developing membranes using the ion-beam irradiation of polyimide thin films, facilitated transport membranes incorporating metal affinity for recovering amino acids, and preparing carbon molecular sieve membranes and their gas separation properties. --SciTechBook News<p><br>


Overviews recent developments related to novel membrane materials, membrane fabrication methods, and membrane modification techniques that together have made processes using artificial membranes competitive with conventional separation methods such as distillation in a wide variety of large-scale industrial applications. The 22 papers, from a September 1997 symposium in Las Vegas, explore such aspects as forming anisotropic and asymmetric membranes by thermally- induced phase separation, the effect of surfactant as an additive on the formation of asymmetric polysulfone membranes for gas separation, a post-synthesis method for developing membranes using the ion-beam irradiation of polyimide thin films, facilitated transport membranes incorporating metal affinity for recovering amino acids, and preparing carbon molecular sieve membranes and their gas separation properties. --SciTech Book News<br>


<br> Overviews recent developments related to novel membrane materials, membrane fabrication methods, and membrane modification techniques that together have made processes using artificial membranes competitive with conventional separation methods such as distillation in a wide variety of large-scale industrial applications. The 22 papers, from a September 1997 symposium in Las Vegas, explore such aspects as forming anisotropic and asymmetric membranes by thermally- induced phase separation, the effect of surfactant as an additive on the formation of asymmetric polysulfone membranes for gas separation, a post-synthesis method for developing membranes using the ion-beam irradiation of polyimide thin films, facilitated transport membranes incorporating metal affinity for recovering amino acids, and preparing carbon molecular sieve membranes and their gas separation properties. --SciTech Book News<br>


Overviews recent developments related to novel membrane materials, membrane fabrication methods, and membrane modification techniques that together have made processes using artificial membranes competitive with conventional separation methods such as distillation in a wide variety of large-scale industrial applications. The 22 papers, from a September 1997 symposium in Las Vegas, explore such aspects as forming anisotropic and asymmetric membranes by thermally- induced phase separation, the effect of surfactant as an additive on the formation of asymmetric polysulfone membranes for gas separation, a post-synthesis method for developing membranes using the ion-beam irradiation of polyimide thin films, facilitated transport membranes incorporating metal affinity for recovering amino acids, and preparing carbon molecular sieve membranes and their gas separation properties. --SciTechBook News


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