X- Ray Diffraction Studies of Patti Claystone Member of the Campano-Maastrichtian Patti Formation, Southern Bida Basin, North Central Nigeria

R. Oladimeji, A. Ola-buraimo
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Abstract

X-ray diffraction and field studies were carried out on the Patti Clay Member of the Patti Formation in the southern Bida Basin. The studies involved field collection of samples and XRD laboratory analysis of clay samples in order to determine the dominant clay type, subordinate associated minerals, geologic processes and paleoenvironment of deposition. Field study involved standard litho-description by noting textural properties, facies type, fossil presence, structure and diagenetic effect. Laboratory XRD analysis procedure included sample grinding, XRD recording condition, selection and measurement of reference minerals, quantification of clay minerals using XRD processing software, XPert-Highscore Plus to generate results indicating clay mineral type and other minerals peaks. Lithostratigraphic section is dominated by the alternation of sandstone and claystone layers. The sedimentary structures are planar parallel and cross bedding in nature. The sandstone at Ahoko and along Lokoja-Abuja highway is characterized by liesegang ring and bioturbation structures. XRD results indicated that the Patti Clay Members are dominated by kaolinite with subordinate illite, montmorillonite and zincite in rare cases. The clay members were suggested to be deposited by moderate to low energy of transportation, moderate to low rate of deposition through prograding mechanism in a marginal marine setting. The kaolinite clay was formed by meteoric water reaction with the shallow-seated clay members through leaching of K+, Na+ and silica ions with resultant kaolinite stable at adequate pH that was not acidic.
尼日利亚中北部Bida盆地南部Campano-Maastrichtian Patti组Patti粘土岩X射线衍射研究
对Bida盆地南部Patti组Patti粘土段进行了x射线衍射和野外研究。研究包括现场样品采集和实验室粘土样品的XRD分析,以确定优势粘土类型,从属伴生矿物,地质过程和沉积的古环境。野外考察包括标准岩性描述,记录地层结构、相类型、化石存在、构造和成岩作用。实验室XRD分析程序包括样品研磨、XRD记录条件、参考矿物的选择和测量、使用XRD处理软件XPert-Highscore Plus对粘土矿物进行定量,生成指示粘土矿物类型和其他矿物峰的结果。岩石地层剖面以砂岩层与粘土层的交替为主。沉积构造性质为平面、平行和交错层理。Ahoko和Lokoja-Abuja高速公路沿线的砂岩以lieesegang环和生物扰动结构为特征。XRD分析结果表明,帕蒂粘土组分以高岭石为主,伊利石次之,蒙脱石次之,锌精矿占少数。粘土段在边缘海相环境中以中低输运能、中低速率的推进机制沉积。高岭石粘土是由大气水与浅层粘土组分通过K+、Na+和二氧化硅离子的浸出反应形成的,生成的高岭石在适当的pH下稳定且不呈酸性。
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