Decarbonization
The authors propose a deep-learning-based approach enabling near-real-time CO2-plume visualization and rapid data assimilation incorporating multiple geological realizations for predicting future CO2 plume evolution and area-of-review determination.
This paper introduces a field-deployable, trailer-mounted liquefaction system engineered to convert flared or stranded gas into low-carbon liquefied natural gas.
This paper describes the operator’s initiative to reduce greenhouse-gas emissions and recover additional hydrocarbon, monetizing it as sales gas, by integrating upstream and downstream gas facilities in a unified approach.
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This paper presents a summary of the results of a study of the potential for repurposing legacy oil and gas facilities in the Gulf of Mexico for uses in a blue economy.
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The authors of this paper describe a holistic approach toward integrating alternative fuels and novel prime movers into life-cycle performance of offshore vessels.
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The Gulf’s offshore wind future is no breezy affair as governments and industries must work together to meet lofty goals.
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Glynn Williams, CEO of Silixa, offers his take on the role fiber-optic technology will play in the rise of CO2 storage and on the firm’s progress in the tight-rock sector.
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The SRMS Guidelines include suggestions for the application of the SRMS with the intent of including details of the processes of quantification, categorization, and classification of storable quantities so that the subjective nature of subsurface assessments can be consistent between storage resource assessors.
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A North Dakota Supreme Court decision changed the rules for leasing pore space from landowners and their rights to compensation. This decision and the US Inflation Reduction Act, which significantly increases tax incentives for operators’ carbon capture and storage projects, is likely to spur other states to clarify their laws regulating pore space.
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The two companies have agreed to develop a carbon capture and storage supply chain to funnel carbon dioxide produced by German industry into storage deep beneath the Norwegian Continental Shelf.
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Consisting of a well pad and a pipeline, the storage project in the southwest of the state will be the first of its kind on land managed by the BLM.
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Unique partnerships forward both conventional renewables and new technologies to close the gap for a carbon-free future across the globe.
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The new-generation FPSO will minimize emissions with carbon capture and reinjection as well as energy-recovery capabilities.