Development of high-performance asymmetric membranes is a major breakthrough in membrane technology. A comprehensive study on original concepts and new advances in membrane formation process is necessary to generate defect-free and ultrathin-skinned asymmetric membranes with superior performance for gas separation process. Correlation of rheological factors with primary-phase inversion process is a novel approach in membrane research that provides a potential platform to improve membrane performance. The former controls general morphology of membrane, whereas the latter further affects molecular orientation in membran
This thesis describes the thorough investigation of mixed gas transport behavior of asymmetric membr...
Asymmetric membranes have been prepared form the polysulfone using dry-wet phase-inversion technique...
Anisotropic polymer membranes have been successfully obtained via the thermal-inversion process. In ...
Gas separation by membranes is a rapidly growing field. It has been recognized as one of the most re...
Selectivity and permeability of asymmetric membrane characterize its performance for gas separation ...
This paper reports the preparation of defect-free asymmetric membranes through the manipulation of m...
Asymmetric polysulfone flat sheet membranes have been produced by a dylwet casting technique. The me...
Membrane based gas separation process technology has been recognized as one of the most efficient an...
Abstract. This study was focused on the effect of shear rate on asymmetric polysulfone membrane stru...
Asymmetric gas separation membranes with dense and defect-free skin layer can be prepared by control...
Considering the rapid progress in applications of membrane separation technologies in various indust...
Oxygen gas separation membranes with mixed ionic and electronic conductivity (MIEC) havefound great ...
The use of biodegradable material in membrane technology will be a great solution in reducing unbiod...
Oxygen gas separation membranes with mixed ionic and electronic conductivity (MIEC) have found great...
Doctor of PhilosophyDepartment of Chemical EngineeringMary E. RezacPolyimide membranes have been use...
This thesis describes the thorough investigation of mixed gas transport behavior of asymmetric membr...
Asymmetric membranes have been prepared form the polysulfone using dry-wet phase-inversion technique...
Anisotropic polymer membranes have been successfully obtained via the thermal-inversion process. In ...
Gas separation by membranes is a rapidly growing field. It has been recognized as one of the most re...
Selectivity and permeability of asymmetric membrane characterize its performance for gas separation ...
This paper reports the preparation of defect-free asymmetric membranes through the manipulation of m...
Asymmetric polysulfone flat sheet membranes have been produced by a dylwet casting technique. The me...
Membrane based gas separation process technology has been recognized as one of the most efficient an...
Abstract. This study was focused on the effect of shear rate on asymmetric polysulfone membrane stru...
Asymmetric gas separation membranes with dense and defect-free skin layer can be prepared by control...
Considering the rapid progress in applications of membrane separation technologies in various indust...
Oxygen gas separation membranes with mixed ionic and electronic conductivity (MIEC) havefound great ...
The use of biodegradable material in membrane technology will be a great solution in reducing unbiod...
Oxygen gas separation membranes with mixed ionic and electronic conductivity (MIEC) have found great...
Doctor of PhilosophyDepartment of Chemical EngineeringMary E. RezacPolyimide membranes have been use...
This thesis describes the thorough investigation of mixed gas transport behavior of asymmetric membr...
Asymmetric membranes have been prepared form the polysulfone using dry-wet phase-inversion technique...
Anisotropic polymer membranes have been successfully obtained via the thermal-inversion process. In ...