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Quantification of mechanical compaction and cementation during contact metamorphism of sandstone

机译:砂岩接触变质期间机械压实和胶结的量化

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Both mechanical compaction and mineral reactions reduce the porosity and permeability of sedimentary rocks. These processes occur during burial and diagenesis, as well as during contact and regional metamorphism. Although the mechanisms governing porosity reduction have been studied extensively in diagenetic sedimentary systems, relatively limited work has been carried out on metamorphic rocks. Here, we present a petrographic method to isolate and quantify the effects of mineral cementation and mechanical compaction in sandstone altered during contact metamorphism. We sampled rocks from the Inmar formation in Makhtesh Ramon (Israel) - where indurated sandstone is present near contacts with dykes - and analyzed them using high resolution scanning electron microscopy and cathodoluminescence. Using image segmentation to differentiate between quartz cement and detrital grains, we observed both grain rearrangement and brittle fracturing near intrusive contacts. At the highest level of porosity reduction, mechanical compaction reduced porosity by 18-31%, while cementation caused a reduction of 11%. We also found that the maximal level of mechanical compaction, as well as its spatial extent, scale with the size of the intrusion. By contrast, the maximal level of cementation was unaffected by the size of the dyke. Our findings demonstrate that to model porosity and permeability evolution in contact aureoles, both mechanical and chemical processes must be taken into account.
机译:机械压实和矿物反应均可降低沉积岩的孔隙率和渗透性。这些过程在埋葬和成岩作用期间发生,以及在接触和区域变质期间发生。虽然在成岩沉积系统中广泛研究了治疗孔隙度减少的机制,但在变质岩石上进行了相对有限的工作。在这里,我们提出了一种分离和量化在接触变质期间改变砂岩中矿物质胶凝和机械压实的效果的岩体方法。我们从Makhtesh Ramon(以色列)的伊马尔形成的岩石中的岩石采样,其中浑浊的砂岩与Dykes附近存在 - 并使用高分辨率扫描电子显微镜和阴极发光分析它们。使用图像分割来区分石英水泥和脱颗粒,我们观察到侵入性接触附近的颗粒重排和脆性压裂。在最高水平的孔隙率降低,机械压实降低孔隙率18-31%,而胶结导致降低11%。我们还发现,最大水平的机械压实,以及其空间程度,含有侵入的尺寸。相比之下,最大水平的胶结水平不受堤坝大小的影响。我们的调查结果表明,为了模拟孔隙率和渗透性进化,必须考虑机械和化学过程。

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  • 来源
    《Journal of structural geology》 |2020年第7期|104062.1-104062.8|共8页
  • 作者单位

    Hebrew Univ Jerusalem Inst Earth Sci Edmond J Safra Campus IL-91904 Jerusalem Israel;

    Hebrew Univ Jerusalem Inst Earth Sci Edmond J Safra Campus IL-91904 Jerusalem Israel;

    Hebrew Univ Jerusalem Inst Earth Sci Edmond J Safra Campus IL-91904 Jerusalem Israel|Open Univ Israel Dept Nat Sci IL-4353701 Raanana Israel;

    Oak Ridge Natl Lab Geochem & Interfacial Sci Grp MS 6110 POB 2008 Oak Ridge TN 37831 USA;

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