Energy transition
This paper explores the development of direct-lithium-extraction technologies designed to recover lithium from unconventional feedstocks.
This study applies Monte Carlo simulation and an XGBoost regression model to assess the influence of various formations, geologic provinces, tectonic-plate types, and boundary conditions on hydrogen concentrations.
This guest editorial addresses the need for high-temperature directional drilling technologies as the number of rigs used to develop next-generation geothermal wells is set to rise in the coming years.
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Two firms are using hydraulic fracturing to create high-pressure water reservoirs that can be turned on and off to meet electricity demand.
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This paper explores electrical submersible generator design considerations, theoretical underpinnings, and potential future applications.
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The Biden Administration plans for a maximum of three lease sales in the Gulf of Mexico from 2024 to 2029.
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The 187-MW Peacock Solar project, expected to come online in the second half of 2024, is designed to help power a Gulf Coast Growth Ventures petrochemical complex.
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The oil and gas industry-backed geothermal firm plans to drill up to 29 wells in southwestern Utah that will deliver electricity to the state's grid by 2026.
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Wind power keeps rising across the globe, while new solar plant developments light up Louisiana and Texas.
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The Advanced Clean Energy Storage project in Utah involves two 4.5-million-bbl salt caverns that will store up to 100 metric tons of hydrogen per day.
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The government is offering its first major funding for the unexplored energy source.
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The authors’ work states that the qualification approach for offshore hydrogen pipeline systems should include material properties testing under various conditions.
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This paper is a summary of a study that covers through-life economics for producing green hydrogen from offshore fixed wind turbines.