Description

The global generation of power depends heavily on coal-fired power plants, and industrial processes such as the production of cement or iron emit CO2 as an intrinsic part of the process. As fossil fuels will remain part of the global energy mix for some time, developing carbon capture and storage technologies is becoming increasingly important for reducing carbon emissions. Topics covered include a review of the technologies likely to be deployed in the first generation of carbon capture and storage plants; potential technologies for CO2 capture, such as metal-organic frameworks and nanoparticle-organic hybrid materials; recent advances in modelling, including thermodynamic theories; and end uses for CO2, such as fuels, building materials and plastics. This Faraday Discussion brings together researchers working on new potential carbon capture materials and processes, physical properties of CO2 and gas mixtures, carbon dioxide utilisation and process engineers looking at incorporating new technologies into viable carbon capture and storage processes.

Carbon Capture and Storage: Faraday Discussion 192

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Hardback by Royal Society of Chemistry

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The global generation of power depends heavily on coal-fired power plants, and industrial processes such as the production of cement... Read more

    Publisher: Royal Society of Chemistry
    Publication Date: 31/10/2016
    ISBN13: 9781782624783, 978-1782624783
    ISBN10: 1782624783

    Number of Pages: 602

    Non Fiction , Earth Sciences, Geography & Environment , Education

    Description

    The global generation of power depends heavily on coal-fired power plants, and industrial processes such as the production of cement or iron emit CO2 as an intrinsic part of the process. As fossil fuels will remain part of the global energy mix for some time, developing carbon capture and storage technologies is becoming increasingly important for reducing carbon emissions. Topics covered include a review of the technologies likely to be deployed in the first generation of carbon capture and storage plants; potential technologies for CO2 capture, such as metal-organic frameworks and nanoparticle-organic hybrid materials; recent advances in modelling, including thermodynamic theories; and end uses for CO2, such as fuels, building materials and plastics. This Faraday Discussion brings together researchers working on new potential carbon capture materials and processes, physical properties of CO2 and gas mixtures, carbon dioxide utilisation and process engineers looking at incorporating new technologies into viable carbon capture and storage processes.

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