Ponnivalavan Babu, Junjie Zheng, Praveen Linga, Rajnish Kumar, Nagu Daraboina
Gas hydrate-based carbon capture, transport, and sequestration (GH–CCS) has emerged as a promising alternative for mitigating anthropogenic CO 2 emissions. Gas hydrates selectively encapsulate CO 2 within crystalline water frameworks under moderate pressure and temperature conditions, offering advantages such as solvent-free operation, high selectivity, and inherent stability for long-term storage. This review provides a comprehensive evaluation of GH–CCS across the entire process chain, including CO 2 capture, transport, and sequestration. Recent advances in hydrate-based separation from fuel gas (CO 2 /H 2 ) and flue gas (CO 2 /N 2 ) streams are discussed, with emphasis on phase behavior, promoters, and reactor design. Developments in hydrate-based CO 2 transport are examined, focusing on slurry transport, rheology, and flow assurance challenges. Sequestration strategies in marine sediments, geological formations, and permafrost regions are also reviewed, including CO 2 –CH 4 exchange mechanisms. Key technical and economic challenges such as hydrate formation kinetics, energy requirements, scale-up feasibility, and long-term storage stability are critically assessed, and future research directions are outlined.