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e-CAPTURE aims to develop a novel reactor that utilizes flow kinetic energy to enhance CO2 capture efficiency while significantly reducing energy consumption. By employing advanced imaging and modeling techniques, the project seeks to overcome limitations of existing technologies, making CO2 capture scalable and econom…
The fossil fuel-driven chemical industry is notorious for its massive CO2 emissions and energy consumption, demanding an urgent shift toward cleaner, more efficient technologies, with CO2 capture as a critical component.
Existing gas-liquid reactive absorption/solvent regeneration technologies, relying on bulky packed columns or motor-driven rotating packed beds, fall short due to transport limitations and scale-up challenges. e-CAPTURE seeks to revolutionize the field with a scalable and electr…
UNIVERSITEIT GENT
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