Carbon capture and storage
This paper presents an experiment investigating dissolution of basaltic primary minerals and conditions favorable for secondary phase formation under deep subsurface storage conditions.
This study aims to investigate the efficacy of chemical additives strontium chloride and barium hydroxide in accelerating CO₂ trapping mechanisms, their effect on dissolution of carbonate-bearing minerals, and resulting poroelastic changes in the host rock.
This paper describes the potential of combined-cycle technology (use of a gas turbine and a steam turbine together to turn fuel into electricity) in offshore carbon-capture applications.
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KBR announced it has been awarded the Concept and front-end-engineering-and-design contract by Statoil for its ground-breaking Northern Lights project to develop an onshore carbon dioxide storage terminal in Norway.
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A subcommittee of the SPE Carbon Dioxide Capture, Utilization, and Storage Technical Section has published the Carbon Dioxide Storage Resources Management System document, which establishes technically based capacity and resources evaluation standards.
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In the world of carbon capture, utilization, and storage technology, utilization is the driving factor. Three experts discussed the motivations, limitations, and challenges of CCUS at a dinner held by the Society of Petroleum Engineers CCUS Technical Section at SPE’s annual meeting.
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In this study, several process alternatives for the permanent sequestration of carbon dioxide (CO2) as solid carbonates are evaluated.
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The Southwest Partnership on Carbon Sequestration (SWP) is one of seven large-scale demonstration projects sponsored by the US Department of Energy.
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This article is a summary of the 2016 follow-up paper on carbon capture and sequestration, one of the five grand challenges to the industry identified by the SPE R&D Committee in 2011.
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In a quiet industrial park in suburban Toronto, there is a machine that eats carbon dioxide (CO2) and spits out fuel. A world away, at a world-class research institute in Bangalore, India, engineers have developed a completely different technology to convert CO2 into industrial chemicals.
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A major oil company is progressing a portfolio of commercial-scale carbon-capture-and-storage (CCS) demonstration projects covering an array of technologies that target applications of relevance to the wider oil and gas industry.
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In chemical-looping combustion (CLC), oxygen is transferred from an air reactor to a fuel reactor by means of a solid oxygen carrier.
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The deployment of appropriate CO2-separation technologies for natural gas processing is viewed as an abatement measure toward global CO2-emissions reduction. Selection of the optimum technology requires special attentiion.