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Proceedings of the 4th International Gas Processing Symposium / edited by Mohammed Jaber F. Al Marri, Fadwa ElJack.

Knovel Oil & Gas Engineering Academic Available online

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Format:
Book
Conference/Event
Contributor:
Al Marri, Mohammed Jaber F., editor.
ElJack, Fadwa, editor.
Conference Name:
International Gas Processing Symposium (4th : 2014 : Doha, Qatar)
Series:
Advances in gas processing ; Volume 4.
Advances in Gas Processing, 1876-0146 ; Volume 4
Language:
English
Subjects (All):
Natural gas--Congresses.
Natural gas.
Physical Description:
1 online resource (417 p.)
Place of Publication:
Amsterdam, The Netherlands ; Kidlington, Oxford : Elsevier, 2015.
Language Note:
English
Summary:
Natural gas continues to be the fuel of choice for power generation and feedstock for a range of petrochemical industries. This trend is driven by environmental, economic and supply considerations with a balance clearly tilting in favor of natural gas as both fuel and feedstock. Despite the recent global economic uncertainty, the oil and gas industry is expected to continue its growth globally, especially in emerging economies. The expansion in LNG capacity coupled with recently launched and on-stream GTL plants poses real technological and environmental challenges. These important development
Contents:
Front Cover ; Proceedings of the 4th International Gas Processing Symposium ; Copyright ; List of Contents ; Preface ; Solubility of CO2 in Aqueous Amine Solutions: A Study to Select Solvents for Carbon Capture from Natural-Gas Power Plant ; Abstract ; 1. Introduction ; 2. Amines for CO2 Absorption ; 3. Experimental ; 4. Vapour-Liquid Equilibrium; 5. Other Thermophysical Properties ; 6. Conclusions ; 7. Acknowledgements ; References
CO2 Capture Using an Aqueous Formulated Solvent Containing Ethylaminoethanol, N- Methyl-2-Pyrolidone, and Hydroxyl Radical Scavengers: Study of Solvent Degradation and Absorption KineticsAbstract ; 1. Introduction ; 2. Experimental; 3. Results and Discussion; 4. Conclusions; 5. Acknowledgements; References; Preparation of Polyethylenimine Impregnated Mesoporous Precipitated Silica for CO2 Capture ; Abstract ; 1. Introduction ; 2. Experimental ; 3. Results and Discussion ; 4. Conclusions ; References
Thermodynamic Analysis of Solar Fuel Production via Thermochemical H2O and/or CO2 Splitting Using Tin Oxide Based Redox Reaction Abstract ; 1. Introduction ; 2. Chemical Thermodynamic Equilibrium ; 3. Chemical Thermodynamic Equilibrium; 4. Second Law Analysis ; 5. Conclusions ; 6. Acknowledgements ; References; Synthesis of a New Cu-Aluminosilicate Catalyst for CO2 Capture and Conversion to Hydrocarbons ; Abstract ; 1. Introduction ; 2. Experimental ; 3. Results and Discussion ; 4. Conclusions ; 5. Acknowledgements ; References
Development of Amine-Blend Systems for CO2 Post-Combustion Capture Abstract ; 1. Introduction ; 2. Experimental ; 3. Results and Discussions ; 4. Conclusions ; References; Single Step Synthesis of Transition Metal Nanoparticles in Aqueous Phase for Catalytic Applications ; Abstract ; 1. Introduction ; 2. Experimental ; 3. Results and Discussion ; 4. Conclusions ; 5. Acknowledgements ; References; Modeling Fischer-Tropsch Product Distribution of a Cobalt-Based Catalyst in Different Reaction Media ; Abstract ; 1. Introduction ; 2. Simulation Methodology ; 3. Experimental Setup
4. Experimental Results and Discussion 5. Conclusions ; 6. Acknowledgements ; References; A Comparative Study of the Effects of Water on Methane Oxidation over Pd@CeO2/Al2O3 and Pd@Tio2/Al2O3 Catalysts ; Abstract ; 1. Introduction ; 2. Experimental ; 3. Results and Discussion ; 4. Conclusions ; 5. Acknowledgements ; References; Conversion of Methane in the Liquid Compression Reactor ; Abstract ; 1. Introduction ; 2. Experimental ; 3. Results and Discussion ; 4. Conclusions ; References; Development of Nickel-Based Catalysts for Methane Steam Reforming; Abstract ; 1. Introduction
2. Experimental
Notes:
Description based upon print version of record.
Includes bibliographical references and index.
Description based on online resource; title from PDF title page (ebrary, viewed June 27, 2015).
ISBN:
0-444-63471-1
0-444-63461-4

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