首页> 外文期刊>Environmental Geosciences >Lithologic, mineralogical, and petrophysical characteristics of the Eau Claire Formation: Complexities of a carbon storage system seal
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Lithologic, mineralogical, and petrophysical characteristics of the Eau Claire Formation: Complexities of a carbon storage system seal

机译:欧克莱尔地层的岩性,矿物学和岩石物理特征:碳存储系统密封的复杂性

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摘要

Concerns about potential climate change related to greenhouse gas emissions have spurred researchers across the world to assess the viability of geologic storage of CO2. In the Illinois Basin in the United States, the Cambrian Mount Simon Sandstone has been targeted as a reservoir for carbon capture and storage (CCS). In this CCS system, the Eau Claire Formation is expected to serve as the primary seal to prevent upward migration of the CO2 plume; however, little work has been done to specifically determine how well it will function as a seal. Although the lateral extent and thickness of the Eau Claire Formation, along with its generally low permeability, certainly make it a prime candidate to serve in this capacity, the primary depositional fabric and mineralogy, which are the fundamental controls on the petrophysical charter of this unit, remain poorly constrained. Therefore, the purpose of this study is to investigate the lithologic, mineralogical, and petrophysical properties of the Eau Claire Formation in an effort to characterize its potential as a functional seal in a CCS system. Sixty-six core-derived Eau Claire Formation samples from seven wells within the Illinois Basin are described using a combination of petrography, reflectance spectroscopy, x-ray diffraction, geochemical, and petrophysical analyses. These analyses show that the Eau Claire Formation contains five different lithofacies (sandstone, clean siltstone, muddy siltstone, silty mudstone, and shale) with fine-scale heterogeneities in fabric and mineralogy that greatly influence the petrophysical properties. Porosity, permeability, and entry-pressure data suggest that some, but not all, lithofacies within the Eau Claire Formation have the capability to serve as a suitable CCS seal. Abundant authigenic minerals and dissolution textures indicate that multiple generations of past fluid-rock interactions have occurred within the Eau Claire Formation, demonstrating that much of the formation has behaved as a fluid conduit instead of as a seal. Minerals that would be potentially reactive in a CCS system (including carbonate, glauconite, and chlorite) are common in the Eau Claire Formation. Dissolution of these and other phases in the presence of carbonic acid could potentially jeopardize the sealing integrity of the unit. Although complexities in the sealing properties exist, the dynamics of the CCS system and the potential for precipitation of new minerals should allow the Eau Claire Formation to serve as an adequate seal.
机译:对与温室气体排放有关的潜在气候变化的担忧促使世界各地的研究人员评估了二氧化碳地质封存的可行性。在美国伊利诺伊盆地,寒武纪西蒙山砂岩已成为碳捕集与封存(CCS)的储层。在该CCS系统中,Eau Claire地层有望作为主要封层,以防止CO2羽流向上迁移。但是,几乎没有做任何工作来具体确定其作为密封件的功能。尽管Eau Claire地层的横向范围和厚度以及普遍较低的渗透率,无疑使其成为这种能力的主要候选者,主要的沉积构造和矿物学是该单元岩石物理章程的基本控制因素。 ,保持严格约束。因此,本研究的目的是研究Eau Claire地层的岩性,矿物学和岩石物理性质,以表征其在CCS系统中作为功能性密封的潜力。利用岩相学,反射光谱,X射线衍射,地球化学和岩石物理分析相结合,描述了来自伊利诺伊盆地内7口井的66个岩心欧克莱尔岩层样品。这些分析表明,Eau Claire地层包含五个不同的岩相(砂岩,清洁粉砂岩,泥质粉砂岩,粉质泥岩和页岩),其在织物和矿物学上的精细异质性极大地影响了岩石物性。孔隙度,渗透率和入口压力数据表明,Eau Claire地层中的一些(而不是全部)岩相具有充当合适的CCS密封的能力。大量的自生矿物和溶蚀质地表明,过去的流体-岩石相互作用已经发生了多代,在Eau Claire地层内发生,这表明该地层中的许多部分都起了流体导管的作用,而不是起到了密封作用。在Eau Claire地层中,通常在CCS系统中可能具有反应性的矿物(包括碳酸盐,青石和亚氯酸盐)。在碳酸的存在下,这些相和其他相的溶解可能会危及装置的密封完整性。尽管存在封闭性的复杂性,但CCS系统的动力学和新矿物沉淀的潜力应使Eau Claire地层能够作为适当的封闭层。

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  • 来源
    《Environmental Geosciences》 |2012年第3期|p.81-104|共24页
  • 作者单位

    1Purdue University, West Lafayette, Indiana;

    (rineufeld@purdue.edu)2Purdue University, West Lafayette, Indiana;

    (bbowen@purdue.edu)3Indiana Geological Survey, Bloomington, Indiana;

    (rlahann@indiana.edu)4Indiana Geological Survey, Bloomington, Indiana;

    (rupp@indiana.edu);

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