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CO2 水合物可以为 CO2 的地下封存提供二次安全保障。

CO2 hydrates could provide secondary safety factor in subsurface sequestration of CO2.

机构信息

Centre for Gas Hydrate Research, Institute of Petroleum Engineering, Heriot-Watt University, Edinburgh, U.K.

出版信息

Environ Sci Technol. 2010 Feb 15;44(4):1509-14. doi: 10.1021/es902450j.

Abstract

Subsurface storage of carbon dioxide (CO(2)) is regarded as a short to medium term solution for reducing greenhouse gas emissions. However, there are concerns with respect to the integrity of seals in subsurface storage of CO(2) and the risks associated with leakage to ocean and atmosphere. In this paper, we report the results of experimental laboratory simulation of CO(2) leakage from subsurface storage sites and the self-sealing mechanism of CO(2) hydrates in subsea sediments, using an experimental setup specifically constructed for this work. The results demonstrate that the sequestrated CO(2) migrated upward and formed hydrates with the pore water in the sediment when the pressure and temperature conditions in the sediments were inside the hydrate stability zone. The CO(2) hydrate formation slowed down the CO(2) diffusion rate by several times to 3 orders of magnitude. The upward migrating CO(2) tended to form hydrate at the base of the hydrate stability zone. On the geological time scale the CO(2) hydrate formation could create a low-permeability secondary cap layer which greatly restricts further upward CO(2) flow, should a leakage occurs. This potential "self-sealing" and "self-healing" process could be an important criterion in the selection of suitable sites for geological storage of CO(2).

摘要

地下储存二氧化碳 (CO2) 被认为是减少温室气体排放的短期到中期解决方案。然而,人们对地下储存 CO2 中密封的完整性以及与向海洋和大气泄漏相关的风险表示担忧。在本文中,我们报告了使用专门为此工作构建的实验装置对地下储存点 CO2 泄漏和海底沉积物中 CO2 水合物自密封机制进行实验模拟的结果。结果表明,当沉积物中的压力和温度条件处于水合物稳定区内部时,被隔离的 CO2 向上迁移并与沉积物中的孔隙水形成水合物。CO2 水合物的形成将 CO2 的扩散速率减缓了几个数量级,达到了 3 个数量级。向上迁移的 CO2 倾向于在水合物稳定区底部形成水合物。在地质时间尺度上,CO2 水合物的形成可能会产生一个低渗透率的次生盖层,这将极大地限制了如果发生泄漏,进一步向上的 CO2 流动。这种潜在的“自密封”和“自我修复”过程可能是选择 CO2 地质储存合适地点的重要标准。

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