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首页> 外文期刊>International Journal of Greenhouse Gas Control >Reactive transport of CO2-saturated water in a cement fracture: Application to wellbore leakage during geologic CO2 storage
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Reactive transport of CO2-saturated water in a cement fracture: Application to wellbore leakage during geologic CO2 storage

机译:水泥裂缝中二氧化碳饱和水的反应性传输:在地质二氧化碳储存过程中的井眼泄漏中的应用

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摘要

Time dependence of fluid flux up a leaky well has significant implications for the feasibility of geologic CO2 storage. We present laboratory experiments that study various boundary conditions, fluid fluxes, and residence times to understand the range of behavior in fractured cement cores. Carbonic acid progressively reacts with cement by dissolving phases which neutralize the acid and liberate calcium ions. This dissolution does not increase the aperture of the fracture, due to the formation of an amorphous silicate residue. Where aqueous calcium concentration and pH are sufficiently high calcium carbonates become insoluble and precipitate in the open fracture. When the driving force for fluid flux is a constant pressure differential precipitation leads to a progressive reduction in fluid flux and the development of self-limiting behavior. With sufficient residence time precipitation leads to sealing of the leaky well. Published by Elsevier Ltd.
机译:泄漏井中流体通量的时间依赖性对地质二氧化碳存储的可行性具有重要意义。我们提出了研究各种边界条件,流体通量和停留时间的实验室实验,以了解在破裂水泥芯中的行为范围。碳酸通过溶解中和酸并释放钙离子的相逐渐与水泥反应。由于形成无定形硅酸盐残渣,这种溶解不会增加裂缝的孔径。在含水钙浓度和pH足够高的地方,碳酸钙变得不溶并沉淀在开放裂缝中。当流体通量的驱动力为恒定压力时,压差沉淀会导致流体通量的逐渐减少和自限性能的发展。在足够的停留时间下,沉淀会导致泄漏井的密封。由Elsevier Ltd.发布

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