对佛罗里达州中南部的上白垩统Lawson组和古新世Cedar Keys组孔隙度和二氧化碳储存潜力进行了评估

Q2 Earth and Planetary Sciences Environmental Geosciences Pub Date : 2013-09-01 DOI:10.1306/EG.06101313003
Tina L. Roberts-Ashby, M. Stewart, Brandon N. Ashby
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引用次数: 7

摘要

佛罗里达的白垩纪岩石被认为是地质封存二氧化碳的潜在合适储层。具体来说,上白垩统Lawson组上段和古新统Cedar Keys组下段是一个潜在的复合CO2储层,主要由多孔白云岩组成,由上覆的中部Cedar Keys组厚硬石膏密封。Cedar Keys-Lawson储层中的许多多孔层段显示出横向连续性,平均孔隙度范围为20%-30%。据估计,该水库的二氧化碳储存能力约为970亿吨,这意味着Lawson和Cedar Keys地层复合水库可以为美国东南部数百家大型发电厂提供长达40年的二氧化碳封存服务。由于以往对Lawson组的研究大多集中在佛罗里达州中北部和东北部以及佐治亚州南部,因此本研究进一步表征了佛罗里达州中南部和南部的地层及其CO2封存潜力。
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An evaluation of porosity and potential use for carbon dioxide storage in the Upper Cretaceous Lawson Formation and Paleocene Cedar Keys Formation of south-central and southern Florida
The Cretaceous rocks of Florida have been recognized as potentially suitable reservoirs for geologic carbon dioxide (CO2) sequestration. Specifically, the upper member of the Upper Cretaceous Lawson Formation, together with the lower part of the Paleocene Cedar Keys Formation, is presented here as a potential composite CO2 storage reservoir that is mainly composed of porous dolostone sealed by thick anhydrites of the overlying middle Cedar Keys Formation. Many of the porous intervals within the Cedar Keys-Lawson storage reservoir display lateral continuity and have an average porosity range of 20%–30%. The estimated CO2 storage capacity for the reservoir is approximately 97 billion t of CO2, which means the Lawson and Cedar Keys Formations composite reservoir could potentially support CO2 sequestration for hundreds of large-scale power plants in the southeastern United States for their entire 40-yr lifespan. Because most of the previous research on the Lawson Formation is concentrated in north-central and northeastern Florida and southern Georgia, this study further characterizes the formation and its CO2 sequestration potential in south-central and southern Florida.
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Environmental Geosciences
Environmental Geosciences Earth and Planetary Sciences-Earth and Planetary Sciences (all)
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