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This timely book explores the lessons learned in and potentials of
injecting supercritical CO2 into depleted oil and gas reservoirs,
in order to maximize both hydrocarbon recovery and the storage
capacities of injected CO2. The author provides a detailed
discussion of key engineering parameters of simultaneous CO2
enhanced oil recovery and CO2 storage in depleted hydrocarbon
reservoirs. These include candidate site selection, CO2 oil
miscibility, maximizing CO2-storage capacity in enhanced oil
recovery operations, well configurations, and cap and reservoir
rock integrity. The book will help practicing professionals devise
strategies to curb greenhouse gas emissions from the use of fossil
fuels for energy production via geologic CO2 storage, while
developing CO2 injection as an economically viable and
environmentally sensible business model for hydrocarbon exploration
and production in a low carbon economy.
This SpringerBrief critically examines the latest experimental and
non-experimental approaches used for the fast and reliable
characterization and determination of CO2-reservoir oil miscibility
in terms of the minimum miscibility pressure (MMP). This book
serves as a one-stop source for developing an enhanced
understanding of these available methods, and specifically
documents, analyses, and evaluates their suitability and robustness
for depicting and characterizing the phenomenon of CO2-reservoir
oil miscibility in a fast and cost-effective manner. Such
information can greatly assist a project team in selecting an
appropriate MMP determination method as per the project's need at a
given project's stage, be that screening, design, or
implementation. CO2-Reservoir Oil Miscibility: Experiential and
Non-Experimental Characterization and Determination Approaches will
be of interest to petroleum science and engineering professionals,
researchers, and undergraduate and graduate students engaged in CO2
enhanced oil recovery (EOR) and/or simultaneous CO2-EOR and storage
projects and related research. It may also be of interest to
engineering and management professionals within the petroleum
industry who have responsibility for implementing CO2-EOR projects.
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