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Methodology for assessing CO2 storage potential of organic-rich shale formations

机译:评估有机富含页岩形成的CO2储存潜力的方法

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The United States Department of Energy's National Energy Technology Laboratory (DOE-NETL) is developing a volumetric-based methodology for calculating prospective CO2 storage resource of organic-rich shale formations. Similar to natural gas, carbon dioxide (CO2) can be stored in organic-rich shale as free-gas within fractures and pores and as a sorbed component on organic matter and clays. The proposed methodology includes three screening criteria to serve as guidelines for assessing CO2 storage. The absence of thorough, comprehensive geologic and petrophysical data for unconventional shale reservoirs is noted as a significant limitation and source of uncertainty in estimating CO2 storage resource. Future work is aimed towards analyzing geologic data from organic-rich shale in order to refine the methodology and reduce the uncertainty associated with CO2 storage in these complex formations.
机译:美国能源部国家能源技术实验室(DOE-Net1)正在开发一种基于体积的基于体积的方法,用于计算有机丰富的页岩形成的前瞻性二氧化碳储存资源。类似于天然气,二氧化碳(CO2)可作为骨折和毛孔内的自由气体储存在有机物中,并作为有机物质和粘土上的吸附组分。所提出的方法包括三个筛选标准,作为评估CO2储存的指导。对非传统页岩储层的缺乏,综合地质和岩石物理数据被认为是估计二氧化碳储存资源的显着限制和不确定来源。未来的工作旨在分析来自有机页岩的地质数据,以便改进方法,并降低这些复杂地层中的CO2储存相关的不确定性。

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