CHF 238.00

Sustainable Development with Carbon Capture
Utilization and Storage Technology (volume 1)

Inglese · Copertina rigida

Spedizione di solito entro 6 a 7 settimane

Descrizione

Ulteriori informazioni

This volume Sustainable Development with Carbon Capture: Utilization and Storage Technology brings together cross-disciplinary research on carbon capture, utilization, and storage (CCUS) to examine the impact of implementing CCUS tools and technologies on emissions reduction and sustainable development in cities and large metropolitan areas. An expert group of global contributors provides in-depth technical discussions, case studies, and examples with an emphasis on the worldwide application of the latest developments in technology, protocols, implementation, and application of CCUS in power and energy systems.
The Book:

  • Discusses CCUS and its Contribution to Sustainable Development Goals, Challenges and Opportunities for CCUS Implementation and Optimizing CCUS Solutions: A Technical and Economic Perspective.
  • Covers Factors Influencing Capture Technology Selection: Efficiency, Cost, Integration with Existing Processes and Applications of Carbon Capture Technologies: Power Plants, Industrial Facilities, and Bioenergy Facilities.
  • Explores Injection Strategies and Plume Management, Suitable Geological Formations for CO2 Storage, Monitoring, Verification, and Risk Mitigation, Metrics for Capture Efficiency, Pipelines for CO2 Transpo

Info autore

Dr. Ashwani Kumar, holding a Ph.D. in Mechanical Engineering with a specialization in Mechanical Vibration and Design, boasts over 15 years of diverse experience. He is currently Professor & Head of Department, Mechanical Engineering (Gazetted Officer Class 1) at the Technical Education Department Uttar Pradesh Kanpur India. Previously, he served as Assistant Professor at Graphic Era University Dehradun. Dr. Kumar's extensive leadership includes roles like AICTE-Extension Coordinator, Nodal Officer for PMKVY-TI, and Zonal Officer for JEE-Diploma. A prolific researcher, he is Series Editor for eight distinguished book series with CRC Press, Wiley Scrivener, and Apple Academic Press, covering diverse topics from advanced manufacturing to AI and sustainable energy. He also serves numerous editorial and review board positions for prestigious international journals. He has authored over 200 articles & book chapters, co-authored/edited 40+ books, and holds four patents. Recognized with numerous research awards, he has guided 15 students through their B.Tech., M.Tech, and Ph.D. theses. His research focuses on CCUS, life cycle assessment, AI/ML in Mechanical Engineering, Smart Materials, Thermal Energy Storage, and Renewable Energy. He is an active participant and invited speaker at international conferences.
Prof. (Dr.) Pratibha S. Agrawal earned her Ph.D. in 2002 from Amravati University. She subsequently served as an Assistant Professor at Hislop College, Nagpur, and contributed to two CSIR-funded research projects. Since 2013, she has been a Professor and Head of the Department of Applied Chemistry at Laxminarayan Innovation Technological University, Nagpur, India. With over 20 years of research experience, Dr. Agrawal has guided 13 Ph.D. students to completion. She is the author of three national and one international book, and has edited two more. Her extensive publication record includes over 80 research papers in national and international journals. She is a recognized reviewer for numerous SCI journals published by Elsevier and Springer, and a frequent invited speaker. Beyond academia, Dr. Agrawal holds significant administrative experience, having served as Director, IQAC Director, and Director of Research, Innovation, and Incubation Linkages. Her research interests span ultrasonic properties, fuels, energy, water purification, and environmental chemistry. She is a life member of several national and international professional associations.
Dr. Yogesh Kumar Singla is an Assistant Professor at the School of Engineering, Math, and Technology, Navajo Technical University, New Mexico, USA. He previously served as a researcher at the University of Idaho and a Research Associate at Case Western Reserve University. He earned his Ph.D. from IIT Roorkee and Master's from Thapar University, where he ranked third in his class. With over 11 years of experience in research and teaching, his expertise includes Manufacturing, Welding, Surface Engineering, Tribology, Materials Characterization, and Welding Metallurgy. He has published 29 peer-reviewed articles, 28 book chapters, and presented 7 papers at international conferences. Dr. Singla serves as Journal Editor of IJMMST and Guest Editor for Inventions (MDPI). He has supervised 1 Ph.D. and 4 M.E. theses. A recognized reviewer for SCI journals (IF: 0.743–7.72), he also filed a utility patent on nano fly ash. He has delivered expert talks, led a 10-day FDP, and edited 7 books with CRC Press, Springer Nature, and Wiley Scrivener.

Riassunto


This volume
“Sustainable Development with Carbon Capture: Utilization and Storage Technology”
brings together cross-disciplinary research on carbon capture, utilization, and storage (CCUS) to examine the impact of implementing CCUS tools and technologies on emissions reduction and sustainable development in cities and large metropolitan areas. An expert group of global contributors provides in-depth technical discussions, case studies, and examples with an emphasis on the worldwide application of the latest developments in technology, protocols, implementation, and application of CCUS in power and energy systems.

The Book:

  • Discusses CCUS and its Contribution to Sustainable Development Goals, Challenges and Opportunities for CCUS Implementation and Optimizing CCUS Solutions: A Technical and Economic Perspective.
  • Covers Factors Influencing Capture Technology Selection: Efficiency, Cost, Integration with Existing Processes and Applications of Carbon Capture Technologies: Power Plants, Industrial Facilities, and Bioenergy Facilities.

  • Explores Injection Strategies and Plume Management, Suitable Geological Formations for CO2 Storage, Monitoring, Verification, and Risk Mitigation, Metrics for Capture Efficiency, Pipelines for CO
    2
    Transport.
  • Explains Minimizing the Environmental Footprint of CCUS, Capital Expenditures and Operating Expenses of CCUS Projects, The Role of Carbon Pricing in Promoting CCUS, Regulatory Frameworks for CCUS Projects, Carbon Pricing and its Impact on CCUS Adoption and Minimizing Environmental Footprint.

  • Showcases a clear idea of Building Capacity for Sustainable Transitions with CCUS, Integration of Renewables to Enhance CCUS Efficiency, from Waste to Resource: Converting Captured CO
    2
    into Liquid Fuels, Gaseous Fuels, and Chemical Feedstocks.
The book will be written for senior undergraduate, graduate students, and academic researchers in the fields of energy & environmental engineering, production engineering, mechanical engineering, industrial engineering, computer science engineering, and sustainable development prectioniers.

Dettagli sul prodotto

Con la collaborazione di Ashwani Kumar (Editore), Pratibha S. Agrawal (Editore), Yogesh Kumar Singla (Editore), Pratibha S Agrawal (Editore), Yogesh Kumar Singla (Editore)
Editore Springer, Berlin
 
Contenuto Libro
Forma del prodotto Copertina rigida
Data pubblicazione 03.04.2026
Categoria Scienze naturali, medicina, informatica, tecnica > Geoscienze > Altro
 
EAN 9783032003348
ISBN 978-3-0-3200334-8
Numero di pagine 1’294
Illustrazioni XXXIII, 1294 p. 285 illus., 276 illus. in color.
Dimensioni (della confezione) 15.5 x 23.5 cm
 
Serie Springer Geography
Categorie Nachhaltigkeit, Sustainability, Künstliche Intelligenz, Artificial Intelligence, Umweltwissenschaften, Umwelttechnik, Sustainable Development, Renewable Energy, Clean Energy, Biomimicry, Fossil fuels, Environmental engineering, Environmental Engineering/Biotechnology, Climate Sciences, climate change mitigation, greenhouse gas emissions, Carbon Capture, CO2 capture, Carbon Storage, Power Plants, CO2 storage, CO2 utilization, Industrial emissions, Saline aquifers, Abandoned coal mines, Geological storage, Biomimetic sequestration, Carbon utilization
 

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