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Researchers developed a lab-scale device that captures carbon dioxide efficiently by pumping it across a battery. The technology aims to reduce capture costs significantly, with projections down to $92 per ton at scale.
Metal-organic frameworks (MOFs) are a revolutionary class of porous crystalline solids with applications in carbon capture, water harvesting from desert air, and drug delivery. The article highlights the work of Berkeley chemist Omar Yaghi and the potential of MOFs to address environmental and energy challenges.
This paper presents an advanced GNN surrogate for forecasting CO2 plume migration in complex geological formations, introducing an anisotropic message-passing mechanism to handle directional transport, aiming to accelerate carbon capture and storage simulations.
Researchers have developed a method to convert polystyrene waste into a solid material that effectively captures CO2 from both smokestacks and ambient air, with tunable properties that could help reduce plastic waste and the carbon footprint of carbon capture.