This multivolume work covers all aspects of membrane science and technology - from basic phenomena to the most advanced applications and future perspectives. Modern membrane engineering is critical to the development of process-intensification strategies and to the stimulation of industrial growth. The work presents researchers and industrial managers with an indispensable tool toward achieving these aims. Covers membrane science theory and economics, as well as applications ranging from chemical purification and natural gas enrichment to potable water Includes contributions and case…mehr
This multivolume work covers all aspects of membrane science and technology - from basic phenomena to the most advanced applications and future perspectives. Modern membrane engineering is critical to the development of process-intensification strategies and to the stimulation of industrial growth. The work presents researchers and industrial managers with an indispensable tool toward achieving these aims.
Covers membrane science theory and economics, as well as applications ranging from chemical purification and natural gas enrichment to potable water Includes contributions and case studies from internationally recognized experts and from up-and-coming researchers working in this multi-billion dollar field Takes a unique, multidisciplinary approach that stimulates research in hybrid technologies for current (and future) life-saving applications (artificial organs, drug delivery)
Book 1: Basic aspects of membrane preparation and their transport phenomena - Role and function of biological membranes - Role and function of artificial and synthetic membranes - Fundamentals for transport phenomena in membrane - Basic aspects for polymeric and inorganic membrane preparation - Membrane characterization
Book 2: Membrane operations in molecular separations - Reverse osmosis: fundamentals, membrane materials and structure, transport mechanism, applications - Nanofiltration: fundamentals and driving forces, membrane materials and structure,transport mechanism, applications - Ultrafiltration: fundamentals, membrane materials and structure, transport mechanism, applications - Microfiltration: fundamentals, membrane materials and structure, transport mechanism, applications - Gas separation: fundamentals, membrane materials and structure, transport mechanism, applications - Pervaporation: fundamentals, membrane materials and structure, transport mechanism, applications - Dialysis: fundamentals, membrane materials and structure, transport mechanism, applications - Electrodialysis: fundamentals, membrane materials and structure, transport mechanism, applications
Book 3: Catalytic membranes and catalytic membrane reactors (CMRs) - The principles of coupling a separation process with a catalytic reaction - Catalytic membranes: polymeric, inorganic and hybrid (materials and methods to heterogenize/confine a catalyst by membrane technology) - Biocatalytic membrane reactors and submerged membrane bioreactors (MBRs) - Pervaporation membrane reactors - Membranes and membrane reactors in artificial organs - Modelling of catalytic membranes and CMRs - Main industrial applications of CMRs (oxidation, dehydrogenation, hydrogenation reactions, etc.)
Book 4: Membrane contactors and integrated membrane operations - Basic principles of membrane contactors - Membrane strippers/scrubbers and membrane extractors - Supported liquid membranes - Membrane distillation - Osmotic distillation - Membrane crystallizers - Membrane emulsifiers - Phase transfer catalysis - Membrane materials and structures for membrane contactors - Modules for membrane contactors applications - Integrated membrane operations in various industrial sectors - Case studies
Book 1: Basic aspects of membrane preparation and their transport phenomena - Role and function of biological membranes - Role and function of artificial and synthetic membranes - Fundamentals for transport phenomena in membrane - Basic aspects for polymeric and inorganic membrane preparation - Membrane characterization
Book 2: Membrane operations in molecular separations - Reverse osmosis: fundamentals, membrane materials and structure, transport mechanism, applications - Nanofiltration: fundamentals and driving forces, membrane materials and structure,transport mechanism, applications - Ultrafiltration: fundamentals, membrane materials and structure, transport mechanism, applications - Microfiltration: fundamentals, membrane materials and structure, transport mechanism, applications - Gas separation: fundamentals, membrane materials and structure, transport mechanism, applications - Pervaporation: fundamentals, membrane materials and structure, transport mechanism, applications - Dialysis: fundamentals, membrane materials and structure, transport mechanism, applications - Electrodialysis: fundamentals, membrane materials and structure, transport mechanism, applications
Book 3: Catalytic membranes and catalytic membrane reactors (CMRs) - The principles of coupling a separation process with a catalytic reaction - Catalytic membranes: polymeric, inorganic and hybrid (materials and methods to heterogenize/confine a catalyst by membrane technology) - Biocatalytic membrane reactors and submerged membrane bioreactors (MBRs) - Pervaporation membrane reactors - Membranes and membrane reactors in artificial organs - Modelling of catalytic membranes and CMRs - Main industrial applications of CMRs (oxidation, dehydrogenation, hydrogenation reactions, etc.)
Book 4: Membrane contactors and integrated membrane operations - Basic principles of membrane contactors - Membrane strippers/scrubbers and membrane extractors - Supported liquid membranes - Membrane distillation - Osmotic distillation - Membrane crystallizers - Membrane emulsifiers - Phase transfer catalysis - Membrane materials and structures for membrane contactors - Modules for membrane contactors applications - Integrated membrane operations in various industrial sectors - Case studies
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