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Sub-Seafloor Carbon Dioxide Storage Potential on the Juan de Fuca Plate, Western North America

机译:西北美洲Juan de Fuca板上的亚海地板二氧化碳储存潜力

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The Juan de Fuca plate, off the western coast of North America, has been suggested as a site for geological sequestration of anthropogenic carbon dioxide because of its many attractive characteristics (high permeability, large storage capacity, reactive rock types). Here we model CO2 injection into fractured basalts comprising the upper several hundred meters of the sub-seafloor basalt reservoir, overlain with low-permeability sediments and a thick saline water column, to examine the feasibility of this reservoir for CO2 storage. Our simulations indicate that the sub-seafloor basalts of the Juan de Fuca plate may be an excellent CO2 storage candidate, as multiple trapping mechanisms (hydrodynamic, density inversions, and mineralization) act to keep the CO2 isolated from terrestrial environments. Questions remain about the lateral extent and connectivity of the high permeability basalts; however, the lack of wells or boreholes and thick sediment cover maximize storage potential while minimizing potential leakage pathways. Although promising, more study is needed to determine the economic and sociological viability of this option.
机译:北美西海岸的Juan de Fuca板被建议作为人为二氧化碳的地质封存的网站,因为其具有许多有吸引力的特性(高渗透性,大存储容量,反应性岩石类型)。在这里,我们将CO2喷射成骨折结构,包括亚海地板玄武岩储层的上百米的上部数百米,俯仰具有低渗透性沉积物和稠盐水柱,以检查该储存器的CO 2储存的可行性。我们的模拟表明,Juan de Fuca板的亚海接线底座可以是优异的CO2储存候选者,作为多捕获机制(流体动力学,密度逆转和矿化),以使二氧化碳与地面环境隔离。问题仍然是横向范围和高渗透性玄武岩的连接;然而,缺乏井或钻孔和厚的沉积物覆盖最大化储存电位,同时最小化潜在的泄漏途径。尽管有希望,需要更多的研究来确定此选项的经济和社会生存能力。

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