Testing page for app
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This study ascertains the capital expenditure and operating expenditure associated with the reuse of existing facilities, specifically regarding a carbon capture and storage project being prepared in South Korea.
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The authors state that issues faced by the Gorgon carbon capture and storage project primarily relate to risk and pressure management of the produced water from the Dupuy formation rather than from capture, transport, injection, and storage technologies.
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This paper describes the development of a system for comprehensive mapping and asset registration using a digital-twin approach.
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The capability of modern wellbore surveying to increase asset value through improved subsurface modeling and completion-equipment placement is being overlooked by managers of operating companies.
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This section lists with regret SPE members who recently passed away.
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This paper describes a decision-support system that integrates field data, system specifications, and simulation tools to quantify system performance, forecast operational challenges, and evaluate the effect of system modifications in water management.
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The papers featured here highlight how artificial intelligence, carbon management, and risk analytics are redefining the way companies assess and manage their assets in increasingly complex environments.
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As the industry advances through a pivotal stage of the energy transition, emphasis remains on topics such as carbon capture and storage (CCS), decarbonized operations, digital transformation, and asset integrity—areas driving innovation, operational excellence, and sustainable value within SPE’s evolving technical landscape.
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If there is a key takeaway as 2025 comes to a close, it is the new level of diligence and depth in water-management planning, along with a growing recognition of the need to invest in more complex methods and sophisticated technologies.
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This paper demonstrates that high-purity salts of calcium, magnesium, strontium, sodium, and lithium can be recovered from produced-water brine using a chemical-reaction pathway followed by vacuum-driven crystallization and a lithium-extraction process.