An ecological and taxonomic account of the algae of the semi-marine cavern, Paradise Cave, Queensland [PDF]
Cribb, A. B. (Alan Bridson)
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Artificial intelligence-driven assessment of salt caverns for underground hydrogen storage in Poland. [PDF]
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Achieving gigawatt-scale green hydrogen production and seasonal storage at industrial locations across the U.S. [PDF]
Breunig H +9 more
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Role of Technology Flexibility and Grid Coupling on Hydrogen Deployment in Net-Zero Energy Systems. [PDF]
Law JW, Mignone BK, Mallapragada DS.
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A unified European hydrogen infrastructure planning to support the rapid scale-up of hydrogen production. [PDF]
Kountouris I +5 more
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Assessment of carbon-abatement pricing to maximize the value of electrolytic hydrogen in emissions-intensive power sectors. [PDF]
Okunlola A, Davis M, Kumar A.
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Realizing renewable resilience: Lessons from the Middle East for the global energy transition. [PDF]
Shahzad AA +6 more
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Development and Application of the Anti-High-Temperature Delayed Crosslinking Polymer as a Gel Plugging Additive for Drilling Fluid. [PDF]
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Modeling Horizontal Salt Cavern Leaching in Bedded Salt Formations
SPE Journal, 2022Summary The leaching of a salt cavern will trigger a series of rock-fluid interactions, including salt rock dissolution, cavity expansion, and brine transport caused by convection, turbulence, and diffusion effects. These interactions have influences on one another.
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