Advances and Technology Development in Greenhouse Gases: Emission, Capture and Conversion
Carbon Capture Technologies
- 1 Edición - 19 de julio de 2024
- Última edición
- Editores: Mohammad Reza Rahimpour, Mohammad Amin Makarem, Maryam Meshksar
- Idioma: Inglés
Advances and Technology Development in Greenhouse Gases: Emission, Capture and Conversion is a comprehensive series that discusses the composition and properties of greenhous… Leer más
Descripción
Descripción
Advances and Technology Development in Greenhouse Gases: Emission, Capture and Conversion is a comprehensive series that discusses the composition and properties of greenhouse gases (GHGs) and introduces different sources of GHGs’ emission and the relation between GHGs and global warming. The comprehensive and detailed presentation of common technologies as well as novel research related to all aspects of GHGs makes this work an indispensable encyclopedic resource for researchers in academia and industry.
Carbon Capture Technologies is devoted to efficient technologies utilized for separating carbon-made GHGs. Section 1 reviews carbon capture concepts followed by a meticulous investigation of different classes of capture methods. Section 2 surveys the absorption process, including amines, physical absorbents, ionic liquids, and deep eutectic and nanoparticle-enhanced solvents. Section 3 addresses adsorption-based strategies with a focus on the role of different solid adsorbents. Section 4 introduces technologies that benefit from membranes and considers different materials utilized in the fabrication of membranes. Finally, Section 5 deals with other as state-of-the-art alternatives in carbon capture.
Puntos claves
Puntos claves
- Introduces carbon capture concepts and challenges
- Describes various absorption and adsorption processes for carbon capture
- Includes various membrane technologies for carbon capture
De interès para
De interès para
Researchers in academia, students and professors in chemical engineering, oil and gas engineering, and mechanical engineering Refinery and petrochemical engineers, Energy producers and utilities, Power generation plants, Extractive companies, Process design companies, Oil, gas and petrochemical industries
Índice
Índice
1. Introduction to carbon capture methods and technologies
2. Energy penalties of CO2 capture technologies
3. The largest operating pilots and plants for carbon capture
Section II: Absorption Techniques for Carbon Capture
4. Application of amines for carbon capture
5. Physical and hybrid solvents for carbon capture: ethers, ammonia, methanol, etc.
6. Carbon capture using alkaline solvents: carbonates and hydroxides
7. Ionic liquids and deep eutectic solvents for carbon capture
8. Carbon capture by solvents modified with nanoparticles
9. Carbon capture by encapsulated liquid sorbents
10. Novel gas-liquid contactors for carbon capture: Mini- and micro-channels, and rotating packed beds
11. Cryogenic-fractionation for carbon capture
12. Enzymatic carbon capture
13. Economic assessments and environmental challenges of carbon capture using absorption techniques
Section III: Adsorption Techniques for Carbon Capture
14. Swing technologies for carbon capture: pressure, thermal, vacuum, electrical and mixed swing processes
15. Carbon capture by carbonaceous sorbents
16. Nitrogen containing carbon materials for carbon capture
17. Metal oxides and porous-based sorbents for carbon capture: MOFs, MCMs, SBAs, Zeolites, etc.
18. CO2 adsorption over photocatalysts
19. Alkaline adsorbents for carbon capture
20. Polymeric materials for carbon capture
21. CO2 capture using algae
22. CO2 capture by soil
23. Economic assessments and environmental challenges of carbon capture using adsorption techniques
Section IV: Membrane Technology for Carbon Capture
24. Hollow-fiber membranes for carbon capture and separation
25. Carbon capture and separation by polymeric membranes for
26. Carbon capture and separation by ionic liquid membranes
27. MOF mixed matrix membranes for carbon capture and separation
28. Dense metal membranes for carbon capture and separation
29. Application of electrochemical membranes for carbon capture and separation
30. Economic assessments and environmental challenges of carbon capture using membrane techniques
Section V: Other Technologies for Carbon Capture
31. Oxy-fuel combustion as a carbon capture technique
32. Recent advances and new concepts of carbon capture
Detalles del producto
Detalles del producto
- Edición: 1
- Última edición
- Publicado: 19 de julio de 2024
- Idioma: Inglés
Sobre los editores
Sobre los editores
MR
Mohammad Reza Rahimpour
Prof. Mohammad Reza Rahimpour is a Professor of Chemical Engineering at Shiraz University, Iran, with extensive experience in chemical process engineering, energy systems, process intensification, and sustainable technologies. His research interests include hydrogen and fuel processing, catalytic processes, separation and membrane technologies, carbon capture and utilization, and the development of energy-efficient processes. His work also encompasses the application of advanced process technologies and emerging approaches to improve environmental performance and resource efficiency. Prof. Rahimpour has authored numerous peer-reviewed publications and has extensive experience in academic research, scientific leadership, and the development of international reference works in chemical engineering, energy, and sustainable technologies.
MM
Mohammad Amin Makarem
Dr. Mohammad Amin Makarem is an Adjunct Lecturer at the School of Engineering, Taylor’s University, Malaysia. He holds a PhD in Chemical Engineering from Shiraz University, Iran. His research covers gas separation and purification, green energy, nanofluids, microfluidics, and catalyst synthesis. Beyond research, he has extensive experience as an editor and contributor to academic publishing, serving as Editor or Co-editor for many books, book series, and major reference works from leading academic publishers. His editorial work spans topics such as carbon capture and storage, bioenergy, greenhouse gases, hydrotreating, oily wastewater, chemical industry crises, hydrogen and methanol energy production, homogeneous catalysis, synthesis gas, natural gas, and renewable energy systems. He recently served as series editor for Advances in Biotechnology: Methods, Applications, and Case Studies and has reviewed manuscripts for prominent international journals, helping guide researchers and industry through high-impact resources.
MM