Carbon capture and storage
This work describes a study in which distributed data parallel training, paired with a node-local caching pipeline, enabled efficient multigraphics-processing-unit scaling for a CO₂-storage graph-neural-network surrogate while maintaining generalization.
This work uses a novel pseudosteady-state-based simulation to reduce training-data-generation cost while maintaining high-performance predictions of data-driven proxy models for carbon-sequestration projects.
Sustainable energy continues to grow as a focus for reliable, affordable, and secure energy as seen from the past year of papers reviewed for this feature. Three primary areas are being reported on heavily: carbon use for enhanced oil recovery, geological hydrogen discovery, and critical minerals from the subsurface.
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With Brazil enacting South America’s first carbon capture and storage (CCS) law, this article examines the technical and regulatory architecture required to scale CCS deployment and provides exclusive insight into Brazil’s accelerating CCS landscape.
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A new paper from researchers at Heriot-Watt University outlines key advances in chemistry that are driving the push in carbon capture technology.
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The companies have signed an agreement to deliver carbon captured using Shell’s Cansolv system.
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The North Sea project will transport and permanently store up to an initial 4 million metric tons of carbon dioxide per year, with startup expected in 2028.
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The CCUS eMentoring Program connects mentors and mentees, offering valuable insights, networking opportunities, and career advancement for both. Join the CCUS eMentorship program to share knowledge, grow together, and shape the future of CCUS.
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Decarbonation has maintained its attraction, as observed from the past year of papers reviewed for this feature. Regarding CCS, challenges have been addressed through various techniques, including laboratory experiments; modeling studies; and field-scale application testing, monitoring, and risk assessment; as well as value chain and economic analysis.
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The SPE Reservoir Technical Discipline and Advisory Committee invite their Reservoir members worldwide to participate in a new survey aimed at assessing the current state of reservoir engineering across industry and academia. Deadline is 21 July 2025.
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The contractor will deliver a similar carbon dioxide injection system to the one it completed for phase one in 2023.
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The Carbon Capture, Utilization, and Storage (CCUS) Technical Section is proud to announce the launch of its new eMentoring Program forward-thinking initiative designed to connect young professionals with seasoned experts across the CCUS industry. This virtual mentorship effort aims to fast-track knowledge transfer, foster professional development, and build a stronge…
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The Norwegian Ministry of Energy has approved the Phase 2 expansion, which is expected to increase carbon dioxide storage capacity from 1.5 million tonnes to 5 million tonnes.