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Microfacies and diagenetic evolution of the limestones of the upper part of the Crato Formation, Araripe Basin, northeastern Brazil

机译:巴西东北部Araripe盆地Crato组上部石灰岩的微相和成岩演化

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This paper presents the results of a petrographic and diagenetic study of the laminated limestones of the upper part of the Aptian to Albian Crato Formation, northeast of Brazil. The applied techniques were optical microscopy, cathodoluminescence and scanning electron microscopy (SEM) coupled to a wavelength-dispersive spectrometer (WDS). Petrographic analysis has revealed that most of the laminated limestones are calcilutites with a dominance of a micritic matrix, indicating a low-energy depositional environment. Microstructures such as microfaults, microfractures, microslumps, and loop bedding were observed. Based on textural, structural and paleontological features, seven microfacies were recognized: massive limestone, limestone with parallel laminations, limestone with undulated laminations, limestone with slumps, limestone with loop bedding, limestone with ostracods and limestone with peloids. In addition, the processes of cementation, dissolution, replacement, recrystallization and compaction, which are related to different diagenetic stages, were also recognized. The diagenetic constituents found in the sections include calcite, pyrite, silica and sulfates. We can conclude that a large part of the microstructures (microfaults, microfractures, microslumps and loop bedding) can be related to local seismicity, probably due to the reactivation of the Patos Shear Zone. The diagenetic constituents indicate an early to late diagenesis (eogenetic, mesogenetic and telogenetic stage).
机译:本文介绍了巴西东北部Aptian至Albian Crato组上部的层状石灰岩的岩石学和成岩作用研究结果。应用的技术是光学显微镜,阴极发光和与波长色散光谱仪(WDS)耦合的扫描电子显微镜(SEM)。岩相学分析表明,大多数层状石灰岩都是钙镁石,主要是微晶相基质,表明沉积环境低能。观察到微结构,如微断层,微裂缝,微塌陷和and陷。根据结构,结构和古生物学特征,可以识别出七个微相:块状石灰岩,平行叠片的石灰岩,叠层的石灰岩,塌陷的石灰岩,带loop层的石灰岩,成骨纲的石灰岩和成倍体的石灰岩。此外,还认识到与不同成岩阶段有关的胶结,溶解,置换,重结晶和压实过程。在这些部分中发现的成岩成分包括方​​解石,黄铁矿,二氧化硅和硫酸盐。我们可以得出结论,很大一部分微观结构(微断层,微裂缝,微塌陷和loop陷层)可能与局部地震活动有关,这可能是由于Patos剪切带的重新激活。成岩成分指示早成岩后期(成岩,中成岩和成岩阶段)。

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