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Membrane technology for CO₂ sequestration and separation

Author: Zeinab Abbas Jawad
Publisher: Boca Raton, FL : CRC Press, Taylor & Francis Group, [2018]
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book addresses the fundamentals of CO2 storage for long-term sequestration in a subsurface geologic formation. In general, membrane gas separation can find a large room ofapplication in flue gas. To achieve the development of this technology on a larger scale than which is possible in the lab we have to use membrane engineering. Consequently, greater emphasis is placed on novel materials for gas separation.  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Membrane technology for CO₂ sequestration and separation.
Boca Raton, FL : CRC Press, Taylor & Francis Group, [2018]
(DLC) 2018059416
(OCoLC)1081338927
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Zeinab Abbas Jawad
ISBN: 9781315146072 131514607X 9781351380805 135138080X 9781351380799 1351380796 9781351380812 1351380818
OCLC Number: 1090813315
Notes: "A science publishers book."
Description: 1 online resource.
Contents: An Introduction to Carbon Capture and Storage TechnologyArshad Raza, Raoof Gholami, Vamegh Rasouli, Reza Rezaee, Chua Han Bing and Ramasamy NagarajanMembrane Engineering in CO2 SeparationsAdele Brunetti, Enrico Drioli and Giuseppe BarbieriPolymeric Membrane for Flue Gas Separation and Other Minor Components in Carbon Dioxide CaptureA.L. Ahmad, Y.O. Salaudeen and Z.A. JawadRecent Progress on Asymmetric Membranes Developed for Natural Gas Purification Gongping Liu, Zhi Xu and Wanqin Jin Membranes for Post-combustion CO2 Capture: How Far to CommercializationXuezhong HeAdvanced Membrane Materials for CO2 Separation from Natural GasA.K. Zulhairun, N. Yusof, W.N.W. Salleh, F. Aziz and A.F. IsmailRole of Aromatic Polyimide Membrane in CO2 Separations: From Monomer to Polymer PerspectivePeng Chee TAN, Pei Ching OH and Siew Chun LOW Zeolite Membranes for CO2 Permeation and SeparationThiam Leng Chew, Tiffany Yit Siew Ng and Yin Fong YeongRheological Evaluation of the Fabrication Parameters of Cellulose Acetate Butyrate Membrane on CO2/N2 Separation Performance R.J. Lee, Z.A. Jawad, A.L. Ahmad, H.B. Chua, H.P. Ngang and S.H.S. ZeinTwo-phase and Three-phase Permeability Models for Mixed Matrix Membrane Gas Separation: An Overview and Comparative StudyAgus Saptoro and Jono Suhartono
Other Titles: Membrane technology for carbon dioxide sequestration and separation
Responsibility: editor, Zeinab Abbas Jawad (Faculty of Engineering and Science, Department of Chemical Engineering, Curtin University, Miri, Sarawak, Malaysia).

Abstract:

This book addresses the fundamentals of CO2 storage for long-term sequestration in a subsurface geologic formation. In general, membrane gas separation can find a large room ofapplication in flue gas. To achieve the development of this technology on a larger scale than which is possible in the lab we have to use membrane engineering. Consequently, greater emphasis is placed on novel materials for gas separation. Possible design strategies and role of novel materials are discussed. Additionally, the latest progress in design and preparation of asymmetric membranes for natural gas purification are highlighted. In fact, further development should focus on module and process design in order to bring gas separation membrane technology into commercial application. Therefore, the keys issues to propel current research towards industrial application are examined. Besides, the feasibility of implementing polyimide membrane for CO2 removal under real industrial conditions and its economic viability are highlighted. In order to exhibit excellent film-forming properties, zeolite membrane and cellulose acetate butyrate membrane areaddressed. Interestingly, it was found that the most accurate theoretical three-phase model is arguably revised Pal model with average percentage error of 0.74%.

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