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An examination of geologic carbon sequestration policies in the context of leakage potential

机译:在潜在泄漏的背景下研究地质固碳政策

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Carbon dioxide (CO2) injected into geologic reservoirs for long-term sequestration, or the brine it displaces, may leak through natural or manmade pathways. Using a leakage estimation model, we simulated fluid leakage from a storage reservoir and its migration into overlying formations. The results are discussed in the context of policies that seek to assure long-term sequestration and protect groundwater. This work is based on a case study of CO2 injection into the Mt. Simon sandstone in the Michigan sedimentary basin, for which we constructed a simplified hydrologic representation of the geologic formations. The simulation results show that (1) CO2 leakage can reach an aquifer containing potable water, but numerous intervening stratigraphic traps limit the rate to be orders of magnitude less than the rate of leakage from the storage reservoir; (2) U.S. Department of Energy guidelines for storage permanence allow for more leakage from larger injection projects than for smaller ones; (3) well leakage permeability is the most important variable in determining leakage processes and substantial leakage requires that numerous wells leaking with the anomalously high permeability of 10(-10) m(2); and (4) leakage can reduce the U.S. Environmental Protection Agency's Area of Review. (C) 2015 Elsevier Ltd. All rights reserved.
机译:注入地质储层进行长期封存的二氧化碳(CO2)或其所取代的盐水可能会通过自然或人为途径泄漏。使用泄漏估算模型,我们模拟了储油库的渗漏及其向上覆地层的运移。将在旨在确保长期封存和保护地下水的政策的背景下讨论这些结果。这项工作基于对山中注入二氧化碳的案例研究。密歇根州沉积盆地中的西蒙砂岩,我们为此构造了地质构造的简化水文表示。模拟结果表明:(1)CO2泄漏可以到达含有饮用水的含水层,但大量的地层圈闭将其速率限制为小于储层泄漏速率的数量级; (2)美国能源部关于储存持久性的准则允许较大的注入项目比较小的注入项目泄漏更多; (3)井漏渗透率是确定漏失过程中最重要的变量,而实质性漏失需要大量以异常高渗透率10(-10)m(2)泄漏的井; (4)泄漏会缩小美国环境保护局的审查范围。 (C)2015 Elsevier Ltd.保留所有权利。

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