Sedimentary features and sequence stratigraphy of the successions around the Carboniferous–Permian boundary in the Ordos Basin: links to glacial and volcanic impacts

Zhong-Shuai Hou , Shi-Yue Chen , Zhao Liang
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Abstract

The sedimentary successions around the Carboniferous–Permian boundary (CPB) in the Ordos Basin were investigated using extensive outcrop, borehole, well logging, thin section, and geochemistry data to study sedimentary and sequence stratigraphic responses to glaciation and volcanism in paleotropical transitional strata. Within the studied interval, five distinct lithofacies have been identified, including bauxite, coal, and carbonaceous shale (No. 8 + 9 coal seams), sandstone (Qiaotou), limestone (Baode), and mudstone, which can be classified into three lithofacies associations. The most complete lithofacies association is composed of bauxite, coal, carbonaceous shale, sandstone, limestone/mudstone or their combinations from the bottom to the top, while coal and carbonaceous shale, as well as sandstone, are absent locally, resulting in the formation of the other two types of lithofacies associations. The occurrence of bauxite indicates shelf exposure and weathering, the occurrence of coal and carbonaceous shale indicates swampiness of the shelf, and the occurrence of sandstone reveals river rejuvenation; all of these are thought to be sedimentary responses to the transcontinental glacier expansion in Gondwana around the CPB. The presence of limestone and mudstone indicates carbonate platform and lagoon deposition, respectively, in the context of the earliest Asselian transgression caused by volcanism-induced glacier melting. The lithofacies associations record the regressive–transgressive cycles that occurred because of glaciation and volcanism near the CPB. The top surface of bauxite can be used as a sequence boundary, while the lowstand systems tract consists of the No. 8 + 9 coal seams and the Qiaotou sandstone, and the transgressive systems tract consists of the overlying Baode limestone and laterally equivalent mudstone. The lowstand systems tract, which contains source rock and hydrocarbon reservoirs, and the overlying transgressive systems tract, which serves as cap rock, form an excellent source-reservoir-seal combination.

鄂尔多斯盆地石炭-二叠纪界线周围序列的沉积特征与层序地层学:与冰川和火山影响的联系
利用大量露头、钻孔、测井、薄片和地球化学资料,研究了鄂尔多斯盆地石炭-二叠纪界线(CPB)周围的沉积序列,研究了古热带过渡地层对冰川和火山作用的沉积和层序地层学响应。在研究层段内,确定了铝土矿、煤、碳质页岩(8 + 9号煤层)、砂岩(桥头)、灰岩(宝德)、泥岩5个不同的岩相组合,可划分为3个岩相组合。最完整的岩相组合由铝土矿、煤、碳质页岩、砂岩、灰岩/泥岩或它们的组合自下而上组成,而局部不存在煤和碳质页岩以及砂岩,从而形成了另外两种类型的岩相组合。铝土矿的出现表明陆架的暴露和风化作用,煤和碳质页岩的出现表明陆架的沼泽性,砂岩的出现表明河流的恢复;所有这些都被认为是对冈瓦纳在CPB周围的横贯大陆冰川扩张的沉积反应。石灰岩和泥岩的存在表明,在最早的亚塞利亚海侵时期,火山作用导致冰川融化,形成了碳酸盐岩台地和泻湖沉积。岩相组合记录了在CPB附近由于冰川作用和火山作用而发生的退海旋回。铝土矿顶面可作为层序边界,低位体系域由8 + 9号煤层和桥头砂岩组成,海侵体系域由上覆的宝德灰岩和横向等效泥岩组成。包含烃源岩和油气藏的低位体系域与上覆海侵体系域作为盖层,形成了良好的生储盖组合。
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