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Diagenetic evolution and chemical changes of deep-water mudstones of Shahejie Formation in the Dongying Sag, Jiyang Depression, Eastern China

机译:东营凹陷沙河街形成深水泥岩的成岩演化与化学变化,济阳坳陷,东部

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The diagenetic evolution and chemical changes of mudstones have a significant influence on the reservoir quality of the mudstones and their interbedded sandstones. To investigate, a variety of methods were applied to the mudstones in the middle of the third member of the Shahejie Formation (Es3z), which were formed in a lacustrine basin during 43.7-38.2 Ma. Optical microscopy and XRD analysis show that the mudstones are dominated by clay minerals (56.8%) followed by carbonate (18.2%), quartz (14.9%), feldspar (8.4%), pyrite (0.9%), anhydrite (0.8%), and total organic carbon (TOC: 2.4%). Cementation and replacement are the main diagenetic events in the mudstone of Es3z. Carbonates and clay minerals are the most common cements, but occasionally authigenic pyrite, albite, and quartz are also present. At the eogenetic stage, the diagenetic events comprised precipitation of pyrite, siderite, dolomite, and calcite besides transformation of K-feldspar into kaolinite. During the mesogenetic stage, the main diagenetic events included precipitation of fracture-filling calcite, ferroan calcite, ankerite, microcrystalline quartz, quartz overgrowth, and transformation of K-feldspar into illite and albite. The limited variation of the Nb/Ta and Zr/Hf ratios and the almost identical distribution pattern of the REE and trace elements indicate that the detrital material in the mudstones was sourced by a common provenance of felsic igneous rocks. The CIA values of Es3z mudstones vary from 50.59 to 65.05 and the PIA values vary from 50.86 to 75.58, which confirm a low-intensity weathering of the source area. Thus, the variation in the bulk-rock geochemical composition of the mudstones may not be primary, but instead a result of mass transfer with the interbedded sandstones during diagenesis. Changes ratios between aim elements (Al, Si, Ca and K) and immobile elements with burial depth in combination with mass balance calculation indicate that aluminum and silicon were retained by the precipitation of authigenic minerals in the mudstone. The mudstones have received progressively more potassium with increasing depths, whereas calcium has been expelled. The reservoir quality of the Es3z sandstones has mainly been affected by the diagenetically induced decrease in the carbonate content in the mudstones causing carbonate cementation in the sandstones.
机译:Mudstones的成岩演化和化学变化对泥岩的储层质量及其冰箱的储层质量产生了重大影响。为了进行研究,将各种方法应用于Shahejie地层(ES3Z)的第三个成员中间的泥岩,其在43.7-38.2 mA期间形成在湖泊盆地中。光学显微镜和XRD分析表明,Mudstones由粘土矿物质(56.8%)主导,其次是碳酸盐(18.2%),石英(14.9%),长石(8.4%),硫铁矿(0.9%),无水石(0.8%),和总有机碳(TOC:2.4%)。胶泥和替代是ES3Z泥岩中的主要成岩事件。碳酸盐和粘土矿物质是最常见的水泥,但偶尔的硫酸吡啶粒子和石英也是如此。在源阶段,除了将K-Feldspar转化为高岭石之外,成岩事件包括吡矿,含水沸石,白云石和方解石的沉淀。在介遗阶型期间,主要的成岩事件包括骨折填充方解石,菲尔根方解石,阿基酮,微晶石英,石英过度生长和K-Feldspar转化为伊尔铁矿和阿尔维特的沉淀。 Nb / Ta和Zr / hf比率的有限变化和Ree和微量元素的几乎相同的分布图案表明,通过铰接火岩的常见出处来源,泥岩中的酥皮物质是滋养的。 ES3Z Mudstones的CIA值从50.59到65.05之间变化,PIA值从50.86到75.58变化,这确认了源区的低强度风化。因此,泥岩的体岩地球化学成分的变化可能不是初级的,而是在成岩作用期间与互粘土的砂岩传质的结果。目标元素(Al,Si,Ca和K)和具有埋深深度的固定元素之间的变化比例与质量平衡计算的组合表明铝和硅通过泥岩中的Aherigenic矿物质的沉淀来保留。 Mudstones逐渐收到了更多的钾,随着深度的增加,而钙已经被排出。 ES3Z砂岩的储层质量主要受到砂岩中碳酸盐含量的碳酸酯含量下降的影响。

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