1st Edition

CO2 Adsorbents Advances in Materials, Technologies, and Applications for a Sustainable Future

    576 Pages 169 B/W Illustrations
    by CRC Press

    CO2 Adsorbents comprehensively explores the materials and technologies used for adsorbing carbon dioxide. It covers materials synthesis, characterization, adsorption mechanisms, applications, modeling, and potential environmental and industrial impacts to help readers find the best adsorbent for their needs. Through its coverage of advanced research and technological developments in the field, such as novel adsorbent materials, innovative synthesis methods, and advancements in scalable production techniques, the book aims to contribute to the understanding of CO2 adsorption processes, materials, and their practical applications in addressing the global challenge of climate change and CO2 emissions reduction.

    • Presents an overview of different adsorbent materials used for CO2 capture and the methods of synthesis, modification, and functionalization to enhance their CO2 adsorption performance.

    • Describes characterization techniques used to assess the structural, morphological, and surface properties of CO2 adsorbents.

    • Explores the fundamental mechanisms behind CO2 adsorption of various materials, the interactions between CO2 molecules and the adsorbent surface, and the kinetics and thermodynamics of CO2 adsorption processes.

    • Through real-world case studies, discusses the applications of CO2 adsorbents in various industries, such as natural gas purification, carbon capture and storage, biogas upgrading, and air purification, and their potential in mitigating greenhouse gas emissions and addressing environmental concerns.

    • Analyzes the environmental impact and feasibility of using CO2 adsorbents in real-world scenarios and the challenges and benefits of integrating adsorption technologies into existing industrial processes.

    • Provides insights into potential improvements, challenges, and directions for further research and development.

    Through its practical relevance, advanced insights, and focus on sustainability and innovation, this text serves as a valuable resource for researchers, engineers, and professionals working in the field of carbon capture and utilization, including those in chemical, environmental, and related engineering disciplines.

    0. Front Matter. 1. CO2 Capture and Adsorption Technologies. 2. Mass transfer, Mechanism, and Diffusion on CO2 adsorption. 3. CO2 Adsorbents characterizations. 4. Synthesis, Preparation, and Pretreatment of CO2 Adsorbents. 5. CO2 Nanostructured Adsorbents. 6. Organic and Inorganic CO2 adsorbents. 7. Polymeric CO2 Adsorbents. 8. Metallic and MOF Adsorbents for CO2 capture. 9. Innovations and Emerging Trends in CO2 Adsorbents. 10. RSM and ANN modelling of CO2 adsorbents. 11. Recyclability Study of CO2 adsorbents. 12. Environmental Impacts and Sustainability. 13. Techno-Economic Analysis. 14. Irradiation effects on CO2 adsorbents. 15. Industrial Applications and Case Studies. 16. International Laws Government Policies and Regulations.

    Biography

    Ahad Ghaemi received his BSc degree from Razi University in 2003 and PhD from Iran University of Science and Technology (IUST) in 2009. He is a Full Chemical Engineering Professor at IUST. His research interests include CO2 capture theologies, gas adsorption, and modeling and simulation of chemical engineering processes. He is an expert in CO2 adsorption.

    Zohreh Khoshraftar obtained a Ph.D. in Applied Chemistry in 2018, with a focus on various aspects of nanotechnology, green chemistry, material synthesis, and pesticides. In 2022, she received a postdoctorate in Chemical Engineering from Iran University of Science and Technology (IUST). During her postdoctorate, her research primarily focused on carbon dioxide adsorption, CO2 absorption, dye removal, heavy metals removal, activated carbon, and the development of kinetic and isotherm modeling techniques to enhance understanding and optimization of these processes. Dr. Khoshraftar also has a strong interest in the application of artificial intelligence modeling, particularly in the context of chemical engineering and related fields.

    Fereshteh Pouresmaeil received her BSc degree at Iran University of Science and Technology (IUST) in 2013, and her PhD from Gubkin Russian State University of Oil and Gas in 2021. She is a postdoctoral researcher at IUST and her research focuses on gas and heavy metal adsorption.