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Engineering Solutions for CO2 Conversion
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Страница 1
Table of Contents
List of Tables
List of Illustrations
Guide
Pages
Engineering Solutions for CO
2
Conversion
Страница 8
1 CO
2
Capture – A Brief Review of Technologies and Its Integration
1.1 Introduction: The Role of Carbon Capture
1.2 CO
2
Capture Technologies 1.2.1 Status of CO
2
Capture Deployment
1.2.2 Pre‐combustion
1.2.3 Oxyfuel
1.2.4 Post‐combustion
1.2.4.1 Adsorption
1.2.4.2 High‐Temperature Solids Looping Technologies
1.2.4.3 Membranes
1.2.4.4 Chemical Absorption
1.2.4.4.1 Advances on Process Configurations
1.2.5 Others CO
2
Capture/Separation Technologies
1.2.5.1 Fuel Cells
1.2.5.1.1 Solid Oxide Fuel Cells (SOFCs)
1.2.5.1.2 Molten Carbonate Fuel Cells (MCFCs)
1.3 Integration of Post‐combustion CO
2
Capture in the Power Plant and Electricity Grid
1.3.1 Integration of the Capture Unit in the Thermal Power Plant
1.3.2 Flexible Operation of Thermal Power Plants in Future Energy Systems
1.4 CO
2
Capture in the Industrial Sector
1.5 Conclusions
References
Notes
2 Advancing CCSU Technologies with Computational Fluid Dynamics (CFD): A Look at the Future by Linking CFD and Process Simulations
2.1 Sweep Across the General Simulation Techniques Available
2.2 Multi‐scale Approach for CFD Simulation of Amine Scrubbers
2.3 Eulerian, Eulerian–Lagrangian, and Discrete Element Methods for the Simulation of Calcium Looping, Mineral Carbonation, and Adsorption in Other Solid Particulate Materials
2.4 CFD for Oxy‐fuel Combustion Technologies: The Application of Single‐Phase Reactive Flows and Particle Tracking Algorithms
2.5 CFD for Carbon Storage and Enhanced Oil Recovery (EOR): The Link Between Advanced Imaging Techniques and CFD
2.6 CFD for Carbon Utilization with Chemical Conversion: The Importance of Numerical Techniques on the Study of New Catalysts
2.7 CFD for Biological Utilization: Microalgae Cultivation
2.8 What Does the Future Hold?
References
3 Membranes Technologies for Efficient CO
2
Capture–Conversion
3.1 Introduction
3.2 Polymer Membranes
3.3 Oxygen Transport Membranes for CO2 Valorization
3.3.1 Oxygen Transport Membrane Fundamentals
3.3.2 Application Concepts of OTMs for Carbon Capture and Storage (CCS)
3.3.3 Existing Developments
3.4 Protonic Membranes
3.4.1 Proton Defects in Oxide Ceramics
3.4.2 Proton Transport Membrane Fundamentals
3.4.3 Application Concepts of Proton Conducting Membranes
3.5 Membranes for Electrochemical Applications
3.5.1 Electrolysis and Co‐electrolysis Processes
3.5.1.1 Water Electrolysis
3.5.1.2 CO
2
Co‐electrolysis
3.5.2 Synthesis Gas Chemistry
Power to methane
.
Power to methanol
.
3.5.3 Other Applications 3.5.3.1 Methane Steam Reforming
3.5.3.2 Methane Dehydroaromatization
3.6 Conclusions and Final Remarks
References
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