Climate change caused by anthropogenic CO2 emissions has become a global challenge. The combustion of fossil fuels produces large amounts of CO2 in flue gas, which are released into the atmosphere. To mitigate CO2 emissions, it is necessary to capture CO2 for utilization or sequestration. Membrane-based separation offers an effective approach for CO2 capture due to its high energy efficiency, small footprint, and simplicity in operation and maintenance. However, advanced membrane material designs are still needed to achieve superior CO2 separation performance and reduce the cost of carbon capture. This Special Issue focuses on recent advances in novel and emerging materials for membrane-based carbon capture. Topics include novel membrane materials-such as polymers, metal-organic frameworks, two-dimensional (2D) materials, and mixed-matrix membranes-for various capture schemes, including post-combustion capture, pre-combustion capture, carbon capture from industrial sources, and direct air capture. It also covers techno-economic analyses, as well as the preparation and characterization of thin-film composite membranes and hollow fiber membranes.
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Hardcover. Zustand: new. Hardcover. Climate change caused by anthropogenic CO2 emissions has become a global challenge. The combustion of fossil fuels produces large amounts of CO2 in flue gas, which are released into the atmosphere. To mitigate CO2 emissions, it is necessary to capture CO2 for utilization or sequestration. Membrane-based separation offers an effective approach for CO2 capture due to its high energy efficiency, small footprint, and simplicity in operation and maintenance. However, advanced membrane material designs are still needed to achieve superior CO2 separation performance and reduce the cost of carbon capture.This Special Issue focuses on recent advances in novel and emerging materials for membrane-based carbon capture. Topics include novel membrane materials-such as polymers, metal-organic frameworks, two-dimensional (2D) materials, and mixed-matrix membranes-for various capture schemes, including post-combustion capture, pre-combustion capture, carbon capture from industrial sources, and direct air capture. It also covers techno-economic analyses, as well as the preparation and characterization of thin-film composite membranes and hollow fiber membranes. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Bestandsnummer des Verkäufers 9783725868087
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Hardcover. Zustand: new. Hardcover. Climate change caused by anthropogenic CO2 emissions has become a global challenge. The combustion of fossil fuels produces large amounts of CO2 in flue gas, which are released into the atmosphere. To mitigate CO2 emissions, it is necessary to capture CO2 for utilization or sequestration. Membrane-based separation offers an effective approach for CO2 capture due to its high energy efficiency, small footprint, and simplicity in operation and maintenance. However, advanced membrane material designs are still needed to achieve superior CO2 separation performance and reduce the cost of carbon capture.This Special Issue focuses on recent advances in novel and emerging materials for membrane-based carbon capture. Topics include novel membrane materials-such as polymers, metal-organic frameworks, two-dimensional (2D) materials, and mixed-matrix membranes-for various capture schemes, including post-combustion capture, pre-combustion capture, carbon capture from industrial sources, and direct air capture. It also covers techno-economic analyses, as well as the preparation and characterization of thin-film composite membranes and hollow fiber membranes. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Bestandsnummer des Verkäufers 9783725868087
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Hardcover. Zustand: new. Hardcover. Climate change caused by anthropogenic CO2 emissions has become a global challenge. The combustion of fossil fuels produces large amounts of CO2 in flue gas, which are released into the atmosphere. To mitigate CO2 emissions, it is necessary to capture CO2 for utilization or sequestration. Membrane-based separation offers an effective approach for CO2 capture due to its high energy efficiency, small footprint, and simplicity in operation and maintenance. However, advanced membrane material designs are still needed to achieve superior CO2 separation performance and reduce the cost of carbon capture.This Special Issue focuses on recent advances in novel and emerging materials for membrane-based carbon capture. Topics include novel membrane materials-such as polymers, metal-organic frameworks, two-dimensional (2D) materials, and mixed-matrix membranes-for various capture schemes, including post-combustion capture, pre-combustion capture, carbon capture from industrial sources, and direct air capture. It also covers techno-economic analyses, as well as the preparation and characterization of thin-film composite membranes and hollow fiber membranes. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. Bestandsnummer des Verkäufers 9783725868087
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Buch. Zustand: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Climate change caused by anthropogenic CO2 emissions has become a global challenge. The combustion of fossil fuels produces large amounts of CO2 in flue gas, which are released into the atmosphere. To mitigate CO2 emissions, it is necessary to capture CO2 for utilization or sequestration. Membrane-based separation offers an effective approach for CO2 capture due to its high energy efficiency, small footprint, and simplicity in operation and maintenance. However, advanced membrane material designs are still needed to achieve superior CO2 separation performance and reduce the cost of carbon capture.This Special Issue focuses on recent advances in novel and emerging materials for membrane-based carbon capture. Topics include novel membrane materials-such as polymers, metal-organic frameworks, two-dimensional (2D) materials, and mixed-matrix membranes-for various capture schemes, including post-combustion capture, pre-combustion capture, carbon capture from industrial sources, and direct air capture. It also covers techno-economic analyses, as well as the preparation and characterization of thin-film composite membranes and hollow fiber membranes. Bestandsnummer des Verkäufers 9783725868087
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