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SPE Offshore Europe 2025 Pulls Industry Leaders to Aberdeen at Crucial Juncture for North Sea FutureSPE Offshore Europe has reaffirmed its position as Europe’s leading offshore energy event, welcoming more than 25,000 professionals to P&J Live in Aberdeen 2–5 September 2025 in what was widely regarded as a landmark week for the sector.
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The companies said they plan to start deploying digital twin technologies in Oman this year.
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A total of 20 companies submitted applications for new exploration blocks offshore Norway.
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The SPE Asset Management Technical Section (AMTS) is teaming up with the University of Houston to launch a pilot program that advances asset management practices and supports the growth of energy professionals worldwide—setting a model for future collaborations between universities and SPE technical sections.
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Egypt’s newest round of drilling agreements advances its quest to boost investment in mature fields to stop the freefall in gas production.
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The oilfield service company will supply power plants capable of electrifying 180,000 US homes with geothermal energy.
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The SPE Management Technical Section has been officially renamed the Asset Management Technical Section. The new name better reflects the section’s focus on asset management as a core discipline in the upstream oil and gas industry.
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The Human Resource Development Corporation and Society of Petroleum Engineers Asia Pacific signed a memorandum of understanding to support the development of a future-ready energy workforce and strengthen Malaysia’s position as a regional hub for technical expertise and innovation.
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This study assesses the advantages, constraints, and necessary enhancements of both passive and active electromagnetic techniques in the context of carbon capture and storage.
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The paper describes the deployment of fiber-optic monitoring of CO₂ injection and containment in a carbonate saline aquifer onshore Abu Dhabi.
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This paper presents a novel workflow with multiobjective optimization techniques to assess the integration of pressure-management methodologies for permanent geological carbon dioxide storage in saline aquifers.
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This paper presents a novel methodology for assessing the rapid mineral carbonation of carbon dioxide through geochemical interactions with carbon-, magnesium-, and iron-rich minerals abundant in geological formations.
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