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Engineering aspects of geologic CO2 ...
~
Saini, Dayanand.
Engineering aspects of geologic CO2 storagesynergy between enhanced oil recovery and storage /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Engineering aspects of geologic CO2 storageby Dayanand Saini.
其他題名:
synergy between enhanced oil recovery and storage /
作者:
Saini, Dayanand.
出版者:
Cham :Springer International Publishing :2017.
面頁冊數:
xx, 73 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Carbon dioxide.
電子資源:
http://dx.doi.org/10.1007/978-3-319-56074-8
ISBN:
9783319560748$q(electronic bk.)
Engineering aspects of geologic CO2 storagesynergy between enhanced oil recovery and storage /
Saini, Dayanand.
Engineering aspects of geologic CO2 storage
synergy between enhanced oil recovery and storage /[electronic resource] :by Dayanand Saini. - Cham :Springer International Publishing :2017. - xx, 73 p. :ill., digital ;24 cm. - SpringerBriefs in petroleum geoscience & engineering,2509-3126. - SpringerBriefs in petroleum geoscience & engineering..
Climate Change and the Petroleum Industry -- Relevance of Geologic CO2 Storage to the Petroleum Industry -- Basic Concepts of CO2 Injection-Based Enhanced Oil Recovery Processes -- Selection of Candidate Sites: Recent Advancements in Selection Methodologies -- Review of Successfully Implemented CO2-EOR Projects: Key Features and Challenges -- Simultaneous CO2-EOR and Storage: An Economically Viable and Environmentally Sensible E&P Business Model in a Low Carbon Economy -- CO2-Oil Miscibility: A Key Design Parameter for CO2-EOR Projects -- Recent Technological Advancements for Maximizing CO2 Storage in EOR Operations -- Dedicated Geologic CO2 Storage: Deep Saline Formations -- Past and Current Geologic CO2 Storage Projects -- Monitoring of Injected CO2: Lessons Learned from Tested Monitoring Technologies in the Field -- Geologic CO2 Storage: A Mean to Extract Water from Deep Saline Formations for Beneficial Reuses.
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.
ISBN: 9783319560748$q(electronic bk.)
Standard No.: 10.1007/978-3-319-56074-8doiSubjects--Topical Terms:
245464
Carbon dioxide.
LC Class. No.: QE516.C37 / S25 2017
Dewey Class. No.: 628.532
Engineering aspects of geologic CO2 storagesynergy between enhanced oil recovery and storage /
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Climate Change and the Petroleum Industry -- Relevance of Geologic CO2 Storage to the Petroleum Industry -- Basic Concepts of CO2 Injection-Based Enhanced Oil Recovery Processes -- Selection of Candidate Sites: Recent Advancements in Selection Methodologies -- Review of Successfully Implemented CO2-EOR Projects: Key Features and Challenges -- Simultaneous CO2-EOR and Storage: An Economically Viable and Environmentally Sensible E&P Business Model in a Low Carbon Economy -- CO2-Oil Miscibility: A Key Design Parameter for CO2-EOR Projects -- Recent Technological Advancements for Maximizing CO2 Storage in EOR Operations -- Dedicated Geologic CO2 Storage: Deep Saline Formations -- Past and Current Geologic CO2 Storage Projects -- Monitoring of Injected CO2: Lessons Learned from Tested Monitoring Technologies in the Field -- Geologic CO2 Storage: A Mean to Extract Water from Deep Saline Formations for Beneficial Reuses.
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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.
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