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首页> 外文期刊>Palaeobiodiversity and Palaeoenvironments >Palynofacies as a palaeoenvironment and hydrocarbon source potential assessment tool: An example from the Cretaceous of north Western Desert, Egypt
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Palynofacies as a palaeoenvironment and hydrocarbon source potential assessment tool: An example from the Cretaceous of north Western Desert, Egypt

机译:Palynofacies作为古环境和碳氢化合物源潜在评估工具:埃及北部沙漠白垩纪的一个例子

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摘要

Optical examination employing transmitted light and UV-fluorescence microscopy of palynological preparations of eighteen cutting samples representing the Alam El Bueib Member (Hautervian-Barremian), Kharita/lower Bahariya (Cenomanian), and Abu Roash (Turonian-Santonian) formations collected from the Faghur Hj5-1 well, north Western Desert, Egypt, allows the identification of three different palynological assemblages from the studied rock units. These assemblages are mainly non-marine but apparently marine at the base of the Alam El Bueib Member, as evidenced by dinocyst occurrence. In addition, the presence of the Pediastrum and chlorophycean algae ecozone, recognised in previous works, is a good datum for the Abu Roash Formation in the north Western Desert of Egypt. Three associations of palynofacies linked to lithofacies changes are recognised and employed in identification of depositional environments. The Alam El Bueib samples yielded mixed kerogen assemblages of non-marine and marine organic facies. The Kharita/lower Bahariya interval is mostly barren, possibly due to prevailing sandstone lithofacies, except for one sample at its upper part which contains a diverse palynological assemblage. The overlying Abu Roash Formation has a homogeneous kerogen composition comprising mainly granular fluorescent AOM and algae as well as rare palynomorphs. Qualitative as well as quantitative variations of palynofacies allow the reconstruction of the depositional environment. The obtained data have the potential for discriminating spatial and redox status differences and providing also information about terrestrial/freshwater influxes. Results support the model that the Alam El Bueib Member was deposited in a marginal dysoxic-anoxic to distal suboxic-anoxic basin. The Kharita/lower Bahariya unit in the studied well was deposited under marginal dysoxic-anoxic conditions whereas the overlying Abu Roash Formation in a distal suboxic-anoxic basin. Palynofacies results also show that the studied material comprises two distinct facies of kerogen. First, Type II > I kerogen (AOM-rich) is overwhelmingly dominant in the Abu Roash Formation and a few samples from the Alam El Bueib Member which are presumed highly oil-prone, whereas Type III kerogen (phytoclast-rich) is particularly common in the Alam El Bueib Member and Kharita/lower Bahariya unit which are considered gas-prone. Thermal maturity determinations obtained from colour changes of smooth-walled palynomorphs reveal that Alam El Bueib samples belong to immature to mature stages; however, Kharita/lower Bahariya and Abu Roash samples are within the immature phase.
机译:使用透射光和紫外荧光显微镜对18个切割样品的孢粉制备进行光学检查,这些样品代表从埃及西北沙漠Faghur Hj5-1井采集的Alam El Bueib段(Hautervian Barremian)、Kharita/lower Bahariya(赛诺曼阶)和Abu Roash(Turonian Santonian)地层,允许从研究的岩石单元中识别三种不同的孢粉组合。这些组合主要是非海相的,但在Alam El Bueib段的底部明显是海相的,这一点可以通过蓝绿藻的出现来证明。此外,在之前的研究中,小孢子藻和绿藻生态带的存在为埃及西北部沙漠中的阿布罗什地层提供了良好的数据。三种与岩相变化有关的孢粉组合被识别并用于沉积环境的识别。Alam El Bueib样品产生了非海相和海相有机相的混合干酪根组合。Kharita/lower Bahariya层段大部分是贫瘠的,可能是由于主要的砂岩岩相,但其上部的一个样本除外,该样本包含多种孢粉组合。上覆的Abu Roash地层具有均一的干酪根成分,主要由粒状荧光AOM和藻类以及罕见的孢粉组成。孢粉面的定性和定量变化使沉积环境得以重建。获得的数据有可能区分空间和氧化还原状态的差异,并提供有关陆地/淡水流入的信息。结果支持Alam El Bueib段沉积在边缘缺氧-缺氧-远端缺氧盆地中的模型。研究井内的Kharita/lower Bahariya单元是在边缘缺氧条件下沉积的,而上覆的Abu Roash组则是在远端亚缺氧盆地中沉积的。孢粉相研究结果还表明,所研究的物质包括两种不同的干酪根相。首先,II型>I型干酪根(富含AOM)在Abu Roash地层和Alam El Bueib段的一些样品中占绝对优势,这些样品被认为具有高度的石油倾向性,而III型干酪根(富含植物碎屑)在Alam El Bueib段和Kharita/lower Bahariya单元中尤其常见,被认为具有天然气倾向性。从光滑壁孢粉形态的颜色变化中获得的热成熟度测定结果表明,Alam El Bueib样品属于未成熟到成熟阶段;然而,Kharita/lower Bahariya和Abu Roash样本处于未成熟阶段。

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