Membrane Engineering for the Treatment of Gases: Volume 1: Gas-separation Issues with Membranes
Elaborating on recent and future developments in the field of membrane engineering, Volume 1 focuses on new membrane materials which have recently emerged in gas separation. Covering graphene/graphene oxide based membranes, PIMs, thermally rearranged membranes, and new mixed matrix membranes, alongside membrane pilot plant trials of gas separation, such as CO2 from flue gas and biogas, as well as a cost analysis of competitive membrane and hybrid systems, this book provides a comprehensive account. Together with Volume 2, these books form an innovative reference work on membrane engineering and technology in the field of gas separation and gaseous phase membrane reactors.
Membrane Engineering for the Treatment of Gases: Volume 1: Gas-separation Issues with Membranes, The Royal Society of Chemistry, 2017.
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CHAPTER 1: Modelling of Gas Separation in Thermally Rearranged Polymeric Membranesp1-27ByElena Tocci;Elena TocciInstitute on Membrane Technology (ITM-CNR), National Research Council, c/o The University of CalabriaCubo 17C, Via Pietro Bucci87036 Rende CSItaly[email protected]Search for other works by this author on:Alessio Caravella;Alessio CaravellaThe University of Calabria – Dept. of Environment and Chemical EngineeringVia Pietro Bucci, Cubo 44A87036 Rende CSItalySearch for other works by this author on:Carmen Rizzuto;Carmen RizzutoInstitute on Membrane Technology (ITM-CNR), National Research Council, c/o The University of CalabriaCubo 17C, Via Pietro Bucci87036 Rende CSItaly[email protected]Search for other works by this author on:Giuseppe Barbieri;Giuseppe BarbieriInstitute on Membrane Technology (ITM-CNR), National Research Council, c/o The University of CalabriaCubo 17C, Via Pietro Bucci87036 Rende CSItaly[email protected]Search for other works by this author on:Young Moo Lee;Young Moo LeeDepartment of Energy Engineering, College of Engineering, Hanyang UniversitySeoul133-791South KoreaSearch for other works by this author on:Enrico DrioliEnrico DrioliInstitute on Membrane Technology (ITM-CNR), National Research Council, c/o The University of CalabriaCubo 17C, Via Pietro Bucci87036 Rende CSItaly[email protected]The University of Calabria – Dept. of Environment and Chemical EngineeringVia Pietro Bucci, Cubo 44A87036 Rende CSItalyDepartment of Energy Engineering, College of Engineering, Hanyang UniversitySeoul133-791South KoreaSearch for other works by this author on:
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CHAPTER 2: Materials by Design: Multiscale Molecular Modelling for the Design of Nanostructured Membranesp28-49ByErik Laurini;Erik LauriniMolecular Simulation Engineering (MOSE) Laboratory, University of Trieste, Department of Engineering and Architecture (DEA)Piazzale Europa 134127 TriesteItaly[email protected]Search for other works by this author on:Maurizio Fermeglia;Maurizio FermegliaMolecular Simulation Engineering (MOSE) Laboratory, University of Trieste, Department of Engineering and Architecture (DEA)Piazzale Europa 134127 TriesteItaly[email protected]Search for other works by this author on:Sabrina PriclSabrina PriclMolecular Simulation Engineering (MOSE) Laboratory, University of Trieste, Department of Engineering and Architecture (DEA)Piazzale Europa 134127 TriesteItaly[email protected]Search for other works by this author on:
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CHAPTER 3: Thermally Rearranged Polymers: The Ultimate Solution for Membrane Gas Separationp50-93ByGuangxi Dong;Guangxi DongDepartment of Energy Engineering, College of Engineering, Hanyang UniversitySeoul 133-791Korea[email protected]Search for other works by this author on:Young Moo LeeYoung Moo LeeDepartment of Energy Engineering, College of Engineering, Hanyang UniversitySeoul 133-791Korea[email protected]Search for other works by this author on:
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CHAPTER 4: Analysis of Gas and Vapor Sorption in Polymer Membranes of Interest for Gas Separation (Including Ionic Liquids)p94-116ByO. Vopička;O. VopičkaUniversity of Chemistry and Technology Prague, Department of Physical ChemistryTechnická 5Prague 6 - Dejvice16628Czech Republic[email protected]Search for other works by this author on:K. Pilnáček;K. PilnáčekUniversity of Chemistry and Technology Prague, Department of Physical ChemistryTechnická 5Prague 6 - Dejvice16628Czech Republic[email protected]Search for other works by this author on:M. Klepić;M. KlepićUniversity of Chemistry and Technology Prague, Department of Physical ChemistryTechnická 5Prague 6 - Dejvice16628Czech Republic[email protected]Search for other works by this author on:M. Lanč;M. LančUniversity of Chemistry and Technology Prague, Department of Physical ChemistryTechnická 5Prague 6 - Dejvice16628Czech Republic[email protected]Search for other works by this author on:Z. Petrusová;Z. PetrusováInstitute of Chemical Process Fundamentals, Czech Academy of SciencesRozvojová 135165 02 Prague 6 - SuchdolCzech RepublicSearch for other works by this author on:P. Izák;P. IzákInstitute of Chemical Process Fundamentals, Czech Academy of SciencesRozvojová 135165 02 Prague 6 - SuchdolCzech RepublicSearch for other works by this author on:K. FriessK. FriessUniversity of Chemistry and Technology Prague, Department of Physical ChemistryTechnická 5Prague 6 - Dejvice16628Czech Republic[email protected]Search for other works by this author on:
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CHAPTER 5: Highly Permeable Polymers for the Treatment of Gases (PIMs)p117-148ByM. TamaddondarM. TamaddondarSearch for other works by this author on:
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CHAPTER 6: Graphene-based Membranes for Gas Separationp149-182ByHo Bum ParkHo Bum ParkSearch for other works by this author on:
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CHAPTER 7: Mass Transport in Zeolite Membranes for Gas Treatment: A New Insightp183-215ByP. F. Zito;P. F. ZitoInstitute on Membrane Technology (ITM-CNR), National Research Council c/o The University of CalabriaCubo 17C, Via Pietro BUCCI87036 Rende CSItaly[email protected]Department of Environmental and Chemical Engineering (DIATIC), The University of CalabriaCubo 44A, Via Pietro BUCCI87036 Rende CSItalySearch for other works by this author on:A. Caravella;A. CaravellaDepartment of Environmental and Chemical Engineering (DIATIC), The University of CalabriaCubo 44A, Via Pietro BUCCI87036 Rende CSItalySearch for other works by this author on:A. Brunetti;A. BrunettiInstitute on Membrane Technology (ITM-CNR), National Research Council c/o The University of CalabriaCubo 17C, Via Pietro BUCCI87036 Rende CSItaly[email protected]Search for other works by this author on:E. Drioli;E. DrioliInstitute on Membrane Technology (ITM-CNR), National Research Council c/o The University of CalabriaCubo 17C, Via Pietro BUCCI87036 Rende CSItaly[email protected]Department of Environmental and Chemical Engineering (DIATIC), The University of CalabriaCubo 44A, Via Pietro BUCCI87036 Rende CSItalySearch for other works by this author on:G. BarbieriG. BarbieriInstitute on Membrane Technology (ITM-CNR), National Research Council c/o The University of CalabriaCubo 17C, Via Pietro BUCCI87036 Rende CSItaly[email protected]Search for other works by this author on:
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CHAPTER 8: Cost Competitive Membrane Processes for Carbon Capturep216-241ByColin A. ScholesColin A. ScholesDepartment of Chemical & Biomolecular Engineering, The University of MelbourneVIC3010Australia[email protected]Search for other works by this author on:
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CHAPTER 9: Polymeric Membrane-based Plants for Biogas Upgradingp242-255ByIng. Ugo MorettiIng. Ugo MorettiSearch for other works by this author on:
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CHAPTER 10: Membrane Absorptionp256-284ByYiqun FanYiqun FanNanjing Tech University, College of Chemical Engineering5# Xinmofan RoadNanjing210009China[email protected]Search for other works by this author on:
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