Advances and Technology Development in Greenhouse Gases: Emission, Capture and Conversion: Process Modelling and Simulation
Editat de Mohammad Reza Rahimpour, Mohammad Amin Makarem, Maryam Meshksaren Limba Engleză Paperback – 17 iul 2024
Advances and Technology Development in Greenhouse Gases: Emission, Capture and Conversion: Process Modelling and Simulation reviews modeling studies of GHG emissions and surveys the details of carbon capture modeling with several well-developed processes such as absorbers, swing technologies, and microstructures. It addresses modeling of geological and ocean storage, and reviews simulation studies of the chemical conversion of carbon dioxide to any valuable materials. This book summarizes essential information required in the simulation and modeling of the processes that are beneficial in carbon capture, storage, or conversion.
- Introduces modeling and simulation methods of carbon and methane emission
- Describes modeling and simulation procedures of producing chemicals from carbon as well as methane
- Discusses modeling and simulation of various technologies for carbon capture
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Specificații
ISBN-13: 9780443190711
ISBN-10: 0443190712
Pagini: 316
Dimensiuni: 191 x 235 mm
Greutate: 0.54 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0443190712
Pagini: 316
Dimensiuni: 191 x 235 mm
Greutate: 0.54 kg
Editura: ELSEVIER SCIENCE
Cuprins
Section I: Greenhouse Gases Emission
1. Modelling of methane emission
2. Modelling of carbon dioxide emission
Section II: Carbon Capture Techniques
3. Process modelling and simulation of carbon capture using packed-bed and fluidized-bed absorbers
4. Modelling and simulation of carbon capture by adsorption technologies: PSA, TSA, VSA, etc.
5. Modelling and simulation of carbon capture using membranes
6. Modelling and simulation of carbon capture using micro-reactors
Section III: Carbon Storage Techniques
7. Modelling and simulation of CO2 geological storage
8. Modelling and simulation of CO2 oceanic storage
Section IV: Chemicals Production and Applications of Greenhouse Gases
9. Design and simulation of methanol production reactor from CO2
10. Design and simulation of urea production reactor from CO2
11. Modelling and simulation of CO2 photoreduction reactor
12. Reactor design for ethanol production from methane
13 Reactor design for direct conversion of methane to aromatics
14. Reactor design for direct conversion of methane to ethylene
15. Modelling of furnace and heat exchanger type reformers
16. Modelling and simulation of fixed-bed, fluidized-bed, and autothermal reformers
17. Modelling and simulation of membrane reactor for methane reforming
18. Modelling of ozone reactor for water treatment
1. Modelling of methane emission
2. Modelling of carbon dioxide emission
Section II: Carbon Capture Techniques
3. Process modelling and simulation of carbon capture using packed-bed and fluidized-bed absorbers
4. Modelling and simulation of carbon capture by adsorption technologies: PSA, TSA, VSA, etc.
5. Modelling and simulation of carbon capture using membranes
6. Modelling and simulation of carbon capture using micro-reactors
Section III: Carbon Storage Techniques
7. Modelling and simulation of CO2 geological storage
8. Modelling and simulation of CO2 oceanic storage
Section IV: Chemicals Production and Applications of Greenhouse Gases
9. Design and simulation of methanol production reactor from CO2
10. Design and simulation of urea production reactor from CO2
11. Modelling and simulation of CO2 photoreduction reactor
12. Reactor design for ethanol production from methane
13 Reactor design for direct conversion of methane to aromatics
14. Reactor design for direct conversion of methane to ethylene
15. Modelling of furnace and heat exchanger type reformers
16. Modelling and simulation of fixed-bed, fluidized-bed, and autothermal reformers
17. Modelling and simulation of membrane reactor for methane reforming
18. Modelling of ozone reactor for water treatment