Membrane Engineering for the Treatment of Gases
Two-Volume Set
Herausgeber: Drioli, Enrico; Brunetti, Adele; Barbieri, Giuseppe
Membrane Engineering for the Treatment of Gases
Two-Volume Set
Herausgeber: Drioli, Enrico; Brunetti, Adele; Barbieri, Giuseppe
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Elaborating on recent and future developments in the field of membrane engineering, this two-volume set forms an innovative reference work on membrane engineering and technology in the field of gas separation and gaseous phase membrane reactors.
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Elaborating on recent and future developments in the field of membrane engineering, this two-volume set forms an innovative reference work on membrane engineering and technology in the field of gas separation and gaseous phase membrane reactors.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: RSC Publishing
- 2nd edition
- Seitenzahl: 696
- Erscheinungstermin: 17. Oktober 2017
- Englisch
- Abmessung: 239mm x 160mm x 48mm
- Gewicht: 1315g
- ISBN-13: 9781782628965
- ISBN-10: 1782628967
- Artikelnr.: 48433231
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: RSC Publishing
- 2nd edition
- Seitenzahl: 696
- Erscheinungstermin: 17. Oktober 2017
- Englisch
- Abmessung: 239mm x 160mm x 48mm
- Gewicht: 1315g
- ISBN-13: 9781782628965
- ISBN-10: 1782628967
- Artikelnr.: 48433231
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Modelling of gas separation in thermally-rearranged polymeric membranes
Materials by design: multiscale molecular modelling for the design of nanostructured membranes
Thermally rearranged (TR) polymers: An ultimate solution for membrane gas separations
Multi-scale Molecular Modelling Approaches for Designing/Selecting Polymers Used for Developing Novel Membranes
Thermally Rearranged Polymer Membranes for Gas Separation
Highly Permeable Polymer Membranes for Gas Separation (PIMs)
Graphene-based Membranes for Gas Separation
Mixed Matrix Membranes (MOFs, ZIFs, Zeolites, etc.) for Gas Separation
Physical Aging of Membranes for Gas Separations
Applications of Membrane Gas Separation in Hydrocarbon Industries
Recent Advances in New Membranes for Gas Separation
Membrane Processes for Post-combustion Capture and Biogas Treatment
Simulation of Polymeric Membrane Systems for CO2 Capture
Membrane Pilot Plant Trials of CO2 Separation from Flue Gas or Cost Competitive Membrane-cryogenic Post-combustion Carbon Capture
Industrial Development of Carbon Dioxide Capture with Membranes at an IGCC Power Plant
Membrane Reactors in Hydrogen Production
Chemical Looping for Hydrogen Production and Purification
Ultrathin Pd-Ag Membranes for Hydrogen Production
Pd-alloy Membranes (Different than Ag) in Precombustion Capture
Pd-based Membranes in Hydrogen Production: Long Term Tests and Contaminants Effects
Polarization and CO Inhibition in Pd-based Membranes
High Temperature Membrane Reactors
Industrial Applications of High Temperature Membrane Reactors for Gas Treatment
Liquid Fuels Production in Membrane Reactors (C1-chemistry)
Flow-through Catalytic Membrane Reactors for the Destruction of a Chemical Warfare Simulant
Carbon Molecular Sieve Membranes for H2 and CO2 Separation
Perovskite Membranes for High Temperature Oxygen Separation
Mass Transport in Zeolite Membrane for the Treatment of Gases
Ceramic Membranes in Gas Treatment
H2O2 Production in MR
Solar Fuels and Chemicals from CO2 or Artificial Leaf
Technoeconomics and LCA of MR in IGCC
New Metrics in Membrane Gas Separation.
Materials by design: multiscale molecular modelling for the design of nanostructured membranes
Thermally rearranged (TR) polymers: An ultimate solution for membrane gas separations
Multi-scale Molecular Modelling Approaches for Designing/Selecting Polymers Used for Developing Novel Membranes
Thermally Rearranged Polymer Membranes for Gas Separation
Highly Permeable Polymer Membranes for Gas Separation (PIMs)
Graphene-based Membranes for Gas Separation
Mixed Matrix Membranes (MOFs, ZIFs, Zeolites, etc.) for Gas Separation
Physical Aging of Membranes for Gas Separations
Applications of Membrane Gas Separation in Hydrocarbon Industries
Recent Advances in New Membranes for Gas Separation
Membrane Processes for Post-combustion Capture and Biogas Treatment
Simulation of Polymeric Membrane Systems for CO2 Capture
Membrane Pilot Plant Trials of CO2 Separation from Flue Gas or Cost Competitive Membrane-cryogenic Post-combustion Carbon Capture
Industrial Development of Carbon Dioxide Capture with Membranes at an IGCC Power Plant
Membrane Reactors in Hydrogen Production
Chemical Looping for Hydrogen Production and Purification
Ultrathin Pd-Ag Membranes for Hydrogen Production
Pd-alloy Membranes (Different than Ag) in Precombustion Capture
Pd-based Membranes in Hydrogen Production: Long Term Tests and Contaminants Effects
Polarization and CO Inhibition in Pd-based Membranes
High Temperature Membrane Reactors
Industrial Applications of High Temperature Membrane Reactors for Gas Treatment
Liquid Fuels Production in Membrane Reactors (C1-chemistry)
Flow-through Catalytic Membrane Reactors for the Destruction of a Chemical Warfare Simulant
Carbon Molecular Sieve Membranes for H2 and CO2 Separation
Perovskite Membranes for High Temperature Oxygen Separation
Mass Transport in Zeolite Membrane for the Treatment of Gases
Ceramic Membranes in Gas Treatment
H2O2 Production in MR
Solar Fuels and Chemicals from CO2 or Artificial Leaf
Technoeconomics and LCA of MR in IGCC
New Metrics in Membrane Gas Separation.
Modelling of gas separation in thermally-rearranged polymeric membranes
Materials by design: multiscale molecular modelling for the design of nanostructured membranes
Thermally rearranged (TR) polymers: An ultimate solution for membrane gas separations
Multi-scale Molecular Modelling Approaches for Designing/Selecting Polymers Used for Developing Novel Membranes
Thermally Rearranged Polymer Membranes for Gas Separation
Highly Permeable Polymer Membranes for Gas Separation (PIMs)
Graphene-based Membranes for Gas Separation
Mixed Matrix Membranes (MOFs, ZIFs, Zeolites, etc.) for Gas Separation
Physical Aging of Membranes for Gas Separations
Applications of Membrane Gas Separation in Hydrocarbon Industries
Recent Advances in New Membranes for Gas Separation
Membrane Processes for Post-combustion Capture and Biogas Treatment
Simulation of Polymeric Membrane Systems for CO2 Capture
Membrane Pilot Plant Trials of CO2 Separation from Flue Gas or Cost Competitive Membrane-cryogenic Post-combustion Carbon Capture
Industrial Development of Carbon Dioxide Capture with Membranes at an IGCC Power Plant
Membrane Reactors in Hydrogen Production
Chemical Looping for Hydrogen Production and Purification
Ultrathin Pd-Ag Membranes for Hydrogen Production
Pd-alloy Membranes (Different than Ag) in Precombustion Capture
Pd-based Membranes in Hydrogen Production: Long Term Tests and Contaminants Effects
Polarization and CO Inhibition in Pd-based Membranes
High Temperature Membrane Reactors
Industrial Applications of High Temperature Membrane Reactors for Gas Treatment
Liquid Fuels Production in Membrane Reactors (C1-chemistry)
Flow-through Catalytic Membrane Reactors for the Destruction of a Chemical Warfare Simulant
Carbon Molecular Sieve Membranes for H2 and CO2 Separation
Perovskite Membranes for High Temperature Oxygen Separation
Mass Transport in Zeolite Membrane for the Treatment of Gases
Ceramic Membranes in Gas Treatment
H2O2 Production in MR
Solar Fuels and Chemicals from CO2 or Artificial Leaf
Technoeconomics and LCA of MR in IGCC
New Metrics in Membrane Gas Separation.
Materials by design: multiscale molecular modelling for the design of nanostructured membranes
Thermally rearranged (TR) polymers: An ultimate solution for membrane gas separations
Multi-scale Molecular Modelling Approaches for Designing/Selecting Polymers Used for Developing Novel Membranes
Thermally Rearranged Polymer Membranes for Gas Separation
Highly Permeable Polymer Membranes for Gas Separation (PIMs)
Graphene-based Membranes for Gas Separation
Mixed Matrix Membranes (MOFs, ZIFs, Zeolites, etc.) for Gas Separation
Physical Aging of Membranes for Gas Separations
Applications of Membrane Gas Separation in Hydrocarbon Industries
Recent Advances in New Membranes for Gas Separation
Membrane Processes for Post-combustion Capture and Biogas Treatment
Simulation of Polymeric Membrane Systems for CO2 Capture
Membrane Pilot Plant Trials of CO2 Separation from Flue Gas or Cost Competitive Membrane-cryogenic Post-combustion Carbon Capture
Industrial Development of Carbon Dioxide Capture with Membranes at an IGCC Power Plant
Membrane Reactors in Hydrogen Production
Chemical Looping for Hydrogen Production and Purification
Ultrathin Pd-Ag Membranes for Hydrogen Production
Pd-alloy Membranes (Different than Ag) in Precombustion Capture
Pd-based Membranes in Hydrogen Production: Long Term Tests and Contaminants Effects
Polarization and CO Inhibition in Pd-based Membranes
High Temperature Membrane Reactors
Industrial Applications of High Temperature Membrane Reactors for Gas Treatment
Liquid Fuels Production in Membrane Reactors (C1-chemistry)
Flow-through Catalytic Membrane Reactors for the Destruction of a Chemical Warfare Simulant
Carbon Molecular Sieve Membranes for H2 and CO2 Separation
Perovskite Membranes for High Temperature Oxygen Separation
Mass Transport in Zeolite Membrane for the Treatment of Gases
Ceramic Membranes in Gas Treatment
H2O2 Production in MR
Solar Fuels and Chemicals from CO2 or Artificial Leaf
Technoeconomics and LCA of MR in IGCC
New Metrics in Membrane Gas Separation.