Pore-scale 4D imaging demonstrates that hydrocarbon swelling and mobilisation compete to control the non-monotonic dissolution rate of carbonate by CO2-saturated brine via changes in advective access.
Dynamic Three- Dimensional Pore-Scale Imaging of Reaction in a Carbonate at Reservoir Condi- tions,
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Digital Rock Physics is proposed as enabling infrastructure for critical minerals strategies through 3D imaging, AI analysis, modeling, and new data standards to improve viability assessment and circularity.
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Time-Resolved Pore-Scale Imaging of Multiphase Dissolution during CO2-Saturated Brine Injection into a Carbonate: Competition between Hydrocarbon Mobilisation and Swelling
Pore-scale 4D imaging demonstrates that hydrocarbon swelling and mobilisation compete to control the non-monotonic dissolution rate of carbonate by CO2-saturated brine via changes in advective access.
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Beyond Critical Minerals Targets: Digital Rock Physics as Infrastructure for Secure and Circular Supply Chains
Digital Rock Physics is proposed as enabling infrastructure for critical minerals strategies through 3D imaging, AI analysis, modeling, and new data standards to improve viability assessment and circularity.