Article citationsMore>>
Aoyagi, R., Kitamura, O., Itaoka, K., Igawa, S. and Suzuki, S. (2011) Study on Role of Simulation of Possible Leakage from Geological CO2 Storage in Sub-Seabed for Environmental Impact Assessment. Energy Procedia, 4, 3881-3888.
https://doi.org/10.1016/j.egypro.2011.02.325
has been cited by the following article:
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TITLE:
Testing of Gravitational Stability of CO2-Hydrates for CO2 Storage on Seafloors
AUTHORS:
Muhammad Towhidul Islam, Boyun Guo
KEYWORDS:
CO2-Hydrates, Gravitational Stability, Experimental Study, CO2 Storage, Seafloors
JOURNAL NAME:
Journal of Environmental Protection,
Vol.17 No.8,
August
28,
2026
ABSTRACT: Discharging carbon dioxide (CO2) to seafloors in the form of CO2-hydrates can potentially store CO2 in virtually unlimited quantity. Realizing the process requires a thorough understanding of CO2-hydrate forming behavior in seawater conditions. One of the major concerns is the gravitational stability of the produced bulk CO2-hydrates. The objective of this study was to seek the optimum procedure for producing bulk CO2-hydrates with densities greater than seawater density. This objective was achieved by direct visualization of CO2-hydrates through the glass windows of a reactor under various pressure and temperature conditions with mixing methods of CO2-bubbling and water-dropping. CO2-bubbling into the water phase was observed to produce bulk CO2-hydrates with densities less than water density due to the excessive CO2 trapped in the bulk hydrates. Water-dropping into the CO2 phase was observed to produce bulk CO2-hydrates with densities greater than water density due to the excessive water trapped in the bulk hydrates. Water-dropping was therefore identified as a favorable mixing method for producing CO2-hydrates with gravitational stability for depositing onto seafloors.