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Carbon dioxide reduction through advanced conversion and utilization technologies

Author: Yun Zheng, (Chemical engineer)
Publisher: Boca Raton : Taylor & Francis, CRC Press, 2019.
Series: Electrochemical energy storage and conversion
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Carbon Dioxide Reduction through Advanced Conversion and Utilization Technologies covers fundamentals, advanced conversion technologies, economic feasibility analysis, and future research directions in the field of CO2 conversion and utilization. This book emphasizes principles of various conversion technologies for CO2 reduction such as enzymatic conversion, mineralization, thermochemical, photochemical, and  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Zheng, Yun (Chemical engineer).
Carbon dioxide reduction through advanced conversion and utilization technologies.
Boca Raton : Taylor & Francis, CRC Press, 2019
(DLC) 2018057440
(OCoLC)1078954141
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Yun Zheng, (Chemical engineer)
ISBN: 9781315104171 1315104172 9781351597302 1351597302 9781351597296 1351597299 9781351597319 1351597310
OCLC Number: 1100071803
Description: 1 online resource.
Contents: Chapter 1 Introduction to CO2 reduction through advanced conversion and utilization technologiesChapter 2 Fundamentals of CO2 structure, thermodynamics and kineticsChapter 3 Enzymatic and mineralized conversion process of CO2 conversionChapter 4 Thermochemical and photochemical/photo-electrochemical conversion process of CO2 conversionChapter 5 Low-temperature electrochemical process of CO2 conversionChapter 6 High-temperature electrochemical process of CO2 conversion with SOCs 1: Introduction and fundamentalsChapter 7 High-temperature electrochemical process of CO2 conversion with SOCs 1: Research status Chapter 8 High-temperature electrochemical process of CO2 conversion with SOCs 3: Key materials Chapter 9 High-temperature electrochemical process of CO2 conversion with SOCs 4: Measurement, characterization and simulationChapter 10 High-temperature electrochemical process of CO2 conversion with SOCs 5: Advanced fabrication methods (Infiltration and freeze casting)Chapter 11 High-temperature electrochemical process of CO2 conversion with SOCs 6: Advanced structure (Heterointerface)Chapter 12 High-temperature electrochemical process of CO2 conversion with SOCs 7: A significant phenomenon (Cation segregation)Chapter 13 High-temperature electrochemical process of CO2 conversion with SOCs 8: cell and stack design, fabrication and scale-upChapter 14 High-temperature electrochemical process of CO2 conversion with SOCs 9: Degradation issuesChapter 15 Economic analysis of CO2 conversion to useful fuels/chemicalsChapter 16 Summary and possible research directions for CO2 conversion technologies
Series Title: Electrochemical energy storage and conversion
Responsibility: Yun Zheng, Bo Yu, Jianchen Wang, Jiujun Zhang.

Abstract:

Carbon Dioxide Reduction through Advanced Conversion and Utilization Technologies covers fundamentals, advanced conversion technologies, economic feasibility analysis, and future research directions in the field of CO2 conversion and utilization. This book emphasizes principles of various conversion technologies for CO2 reduction such as enzymatic conversion, mineralization, thermochemical, photochemical, and electrochemical processes. It addresses materials, components, assembly and manufacturing, degradation mechanisms, challenges, and development strategies. Applications of conversion technologies for CO2 reduction to produce useful fuels and chemicals in energy and industrial systems are discussed as solutions to reduce greenhouse effects and energy shortages. Particularly, the advanced materials and technology of high temperature co-electrolysis of H2O and CO2 to produce sustainable fuels using solid oxide cells (SOCs) are reviewed and the introduction, fundamentals, and some significant topics regarding this CO2 conversion process are discussed. This book provides a comprehensive and clear picture of advanced technologies in CO2 conversion and utilization. Written in a clear and detailed manner, it is suitable for students as well as industry professionals, researchers, and academics.

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