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Carbon Capture and Storage: Technologies, Policies, Applications and Implementation Strategy

The book covers a wide spectrum of CCS issues.
It addresses topics that have not generally been addressed elsewhere. For example, the issue of water production associated with CCS project is critical for many countries.
The book provides the most up-to date data and current status of global CCS technologies, programs, and applications, which is important as CCS has advanced and made significant progress in the past years.
On top of technology issues, the book addresses key items for future large-scale commercial deployment of CCS from regulatory, economic, financing and social standpoints, as well as solutions to favour this deployment: where are we in 2010? Where shall we be in 2050? What barriers to overcome and how to remove them?
This is the first book written on CCS by a major oil and gas producing country, which gives the book a new perspective as CCS is generally associated with coal production and its use

By: King Abdullah Petroleum Studies (Author), Saud M Al-Fattah (Author), Murad F Barghouty (Author), Bashir O Dabbousi (Author)

380 pages, colour photos, colour illustrations, colour maps, tables

CRC Press

Hardback | Nov 2011 | #196378 | ISBN-13: 9780415620840
Availability: Usually dispatched within 6 days Details
NHBS Price: £129.00 $158/€145 approx

About this book

This book focuses on issues related to a suite of technologies known as "Carbon Capture and Storage (CCS)," which can be used to capture and store underground large amounts of industrial CO2 emissions. It addresses how CCS should work, as well as where, why, and how these technologies should be deployed, emphasizing the gaps to be filled in terms of research and development, technology, regulations, economics, and public acceptance.

The book is divided into three parts. The first part helps clarify the global context in which greenhouse gas (GHG) emissions can be analyzed, highlights the importance of fossil-fuel producing and consuming nations in positively driving clean fossil-fuel usage, and discusses the applicability of this technology on a global and regional level in a timely yet responsible manner. The second part provides a comprehensive overview of present and future technologies for the three elements of the CCS chain: CO2 capture, transport, and geological storage. The third part addresses the key drivers for CCS deployment worldwide. It provides analysis and assessment of the economic, regulatory, social, and environmental aspects associated with CCS development and deployment on a global scale. It offers a somewhat different perspective on CCS deployment by highlighting the environmental and socio-economic costs and benefits of CCS solutions compared to alternatives.

The book concludes with potential options and guidelines for sustainable and responsible CCS scale-up as a way to address prevailing global energy, environment, and climate concerns.



Part I: Why CCS?
1 CCS In A Global Context
2 CCS Deployment Status, Regional Applicability, And Stakeholders

Part II: Technical Description And Operability Of The CCS Chain
3 CO2 Capture And Separation
4 CO2 Transport Systems
5 CO2 Geological Storage

Part III: Deployment Drivers
6 CCS Regulatory Framework
7 Economics Of The CCS Chain
8 CCS Quality Standards - Challenges To Commercialization
9 Conclusion: A Pragmatic Way Forward


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Saud M. Al-Fattah is Director of Global Energy Markets and Economics Research at the King Abdullah Petroleum Studies and Research Center. Saud has more than 25 years of experience with Saudi Aramco working in several petroleum engineering departments including reservoir management, oil and gas reserves assessment and fields' development studies, reservoir simulation and reservoir engineering systems. His areas of specialty include: reservoir management, energy markets and economics, artificial intelligence, and strategic management. Saud has a U.S. patent, published several technical papers in peer-reviewed journals, and authored and co-authored three books: "Innovative Methods for Analyzing and Forecasting World Gas Supply," "Artificial Intelligence and Data Mining Applications in the E&P Industry," and "Carbon Capture and Storage: Technologies, Policies, Economics, and Implementation Strategies". He is an active member of the Society of Petroleum Engineers (SPE), the International Association for Energy Economics (IAEE), and the European Association of Geoscientists & Engineers (EAGE). He is also a member of the SPE Artificial Intelligence & Petroleum Analytics Subcommittee.
Saud is a technical editor for the SPE Reservoir Evaluation & Engineering Journal, Natural Gas Science and Engineering Journal, and several other industry publications. He held the positions of vice chairman of the 2006 SPE Saudi Arabia Annual Technical Symposium, and chairman of the 2007 SPE Saudi Arabia Annual Technical Symposium.
He earned his Ph.D. with distinction from Texas A&M University, and M.S. and B.S. degrees with honors from King Fahd University of Petroleum and Minerals (KFUPM), all in petroleum engineering.

Murad Barghouty is Director of Energy and Environmental Technology Research at the King Abdullah Petroleum Studies and Research Center (KAPSARC). He has 24 years of experience in Saudi Aramco encompassing assignments in reservoir management, reservoir simulation, reservoir characterization, and production operations. Murad graduated in 1987 from Marietta College, Ohio, U.S., with a B.S. in Petroleum Engineering.

Bashir Dabbousi is the Interim Vice President of Research at the King Abdullah Petroleum Studies and Research Center (KAPSARC). Prior to joining KAPSARC, he was Coordinator of the R&D Division in the Research & Development Center, where he spent most of his career with Saudi Aramco. He has coauthored 10 U.S. patents, 3 U.S. patent applications and 25 publications in peer reviewed technical journals in the research areas of nanostructured light emitting materials (5 patents licensed to two U.S. companies), liquid petroleum fuels, crude and products desulfurization and oil to hydrogen. During 2005-2006, he was an Academic Visitor in the Department of Chemical Engineering and Chemical Technology at Imperial College London.
Bashir received a B.S. degree in Chemistry summa cum laude from the University of California, Berkeley and a Ph.D. in Physical Chemistry from the Massachusetts Institute of Technology (MIT). He also completed the Advanced Management and Leadership Program at Oxford University, Said Business School.

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