Piping, Valves, and Process Engineering in Carbon Capture Systems: Applications, Sustainability, and Environmental Protection
Autor Karan Sotoodehen Limba Engleză Paperback – iun 2026
- Provides the first comprehensive resource focused on piping and valves in CCS applications
- Explores emerging technologies like digital twins, self-healing materials, and digitalization in CCS systems
- Integrates advanced materials, lifecycle assessment, and sustainability metrics for CCS infrastructure
- Addresses critical challenges such as corrosion, high-pressure transport, and hybrid gas pipelines
- Facilitates practical decision-making with real-world case studies and illustrations
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Specificații
ISBN-13: 9780443510786
ISBN-10: 0443510784
Pagini: 400
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0443510784
Pagini: 400
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction to Carbon Capture and Storage
2. Fundamentals of Piping and Valves in Carbon Capture Systems
3. Codes and Standards for CCS Piping and Valves
4. Material Selection and Corrosion Considerations for Piping and Valves in Carbon Capture
5. Design Considerations for CCS Piping Systems
6. Valve Selection and Design for CCS
7. CO₂ Transportation and Storage Challenges
8. Welding, Fabrication, and Installation of Piping and Valves in CCS
9. Failure Modes and Risk Assessment in CCS Piping and Valves
10. Digitalization and Smart Monitoring of CCS Piping and Valves
11. Cost Analysis and Economic Considerations
12. Case Studies and Real-World CCS Projects
13. Future of Piping and Valves in Carbon Capture
14. Environmental Protection and Sustainability in CCS Piping Systems
15. Hydrogen in Carbon Capture
16. Integration of Carbon Capture with Renewable Energy Sources
17. Advances in Direct Air Capture (DAC) and Piping/Valves Design
18. Hybrid Systems: Hydrogen, CO₂, and Renewable Gas Pipelines
19. Emerging Materials and Coatings for CCS Piping and Valves
20. Sustainability Metrics and Lifecycle Assessment (LCA) for CCS Systems
2. Fundamentals of Piping and Valves in Carbon Capture Systems
3. Codes and Standards for CCS Piping and Valves
4. Material Selection and Corrosion Considerations for Piping and Valves in Carbon Capture
5. Design Considerations for CCS Piping Systems
6. Valve Selection and Design for CCS
7. CO₂ Transportation and Storage Challenges
8. Welding, Fabrication, and Installation of Piping and Valves in CCS
9. Failure Modes and Risk Assessment in CCS Piping and Valves
10. Digitalization and Smart Monitoring of CCS Piping and Valves
11. Cost Analysis and Economic Considerations
12. Case Studies and Real-World CCS Projects
13. Future of Piping and Valves in Carbon Capture
14. Environmental Protection and Sustainability in CCS Piping Systems
15. Hydrogen in Carbon Capture
16. Integration of Carbon Capture with Renewable Energy Sources
17. Advances in Direct Air Capture (DAC) and Piping/Valves Design
18. Hybrid Systems: Hydrogen, CO₂, and Renewable Gas Pipelines
19. Emerging Materials and Coatings for CCS Piping and Valves
20. Sustainability Metrics and Lifecycle Assessment (LCA) for CCS Systems