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Clay minerals in sediments of the hydrothermally active southern trough in the Guaymas Basin (Gulf of California)

机译:瓜伊马斯盆地(加利福尼亚湾)热液活动性南部槽中沉积物中的粘土矿物

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The results of the study of clay mineral alterations in Upper Pleistocene sediments of the southern trough in the Guaymas Basin (Gulf of California) due to the influence of hydrothermal solutions and heat produced by sill intrusions are discussed. Core samples from DSDP Holes 477 and 477A were taken for the analysis of clay minerals. Application of the method of modeling X-ray diffraction patterns of oriented specimens of the finely dispersed particles made it possible to establish the phase composition of clay minerals, determine their structural parameters, and obtain reliable quantitative estimates of their contents in natural mixtures. The modeling data allowed us to characterize reliably the transformation of clay minerals in sediments of the hydrothermally active southern trough in the Guaymas Basin. In Upper Pleistocene sandy-clayey sediments of the southern trough, changes in the composition of clay minerals occurred under the influence of a long-living hydrothermal system. Its lower part (interval 170.0-257.5 m) with maximum temperatures (similar to 300A degrees C) was marked by the formation of chlorite. Terrigenous clay minerals are not preserved here. Saponite appears at a depth of 248 m in the chlorite formation zone. Higher in the sedimentary section, the interval 146-170 m is also barren of terrigenous clay minerals. Sediments of this interval yielded two newly formed clay minerals (chlorite and illite), which were formed at lower temperatures (above 180A degrees C and below 300A degrees C, approximately up to similar to 250A degrees C), while the relatively low-temperature upper part (110-146 m) of the hydrothermal system (from similar to 140A degrees C to similar to 180A degrees C) includes the mixture of terrigenous and newly formed clay minerals. Terrigenous illite is preserved here. Illitization of the mixed-layer illite-smectite was subjected to illitization. The terrigenous montmorillonite disappeared, and chlorite-smectite with 5-10% of smectite layers were formed. In the upper interval (down to approximately 110 mbsf), the composition of terrigenous clay minerals remains unchanged. They are composed of the predominant mixed-layer illite-smectite and montmorillonite, the subordinate illite, mixed-layer chlorite-smectite with 5% of smectite layers, mixed-layer kaolinite-smectite with 30% of smectite layers, and kaolinite. This composition of clay minerals changed under the influence of sill intrusions into the sedimentary cover at 58-105 m in the section of Hole 477. The most significant changes are noted in the 8-m-thick member above the sill at 50-58 m. The upper part of this interval is barren of the terrigenous mixed-layer illite-smectite, which is replaced by the newly formed trioctahedral smectite (saponite). At the same time, the terrigenous dioctahedral smectite (montmorillonite) is preserved. The composition of terrigenous clay minerals remains unchanged at the top of the unit underlying the sill base.
机译:讨论了在瓜伊马斯盆地(加利福尼亚湾)南部海槽上更新世沉积物中粘土矿物变化的研究结果,这些变化是由于水热溶液和基岩侵入产生的热量的影响。取自DSDP孔477和477A的岩心样品进行粘土矿物分析。对细分散颗粒的定向试样的X射线衍射图进行建模的方法的应用使建立粘土矿物的相组成,确定其结构参数以及获得其在天然混合物中含量的可靠定量估计成为可能。建模数据使我们能够可靠地表征瓜伊马斯盆地南部热液活跃槽中沉积物中粘土矿物的转化。在南部槽的上更新世沙质粘土沉积物中,在长寿命热液系统的影响下,粘土矿物组成发生了变化。亚氯酸盐的形成标志着其最高温度(类似于300A摄氏度)的下部(间隔170.0-257.5 m)。这里没有保存土质粘土矿物。皂石出现在亚氯酸盐形成区的248 m深度处。在沉积区较高的位置,146-170 m的间隔也是贫瘠的土质粘土矿物。在此间隔内的沉积物产生了两种新形成的粘土矿物(绿泥石和伊利石),它们是在较低的温度(高于180A摄氏度且低于300A摄氏度,大约高达250A摄氏度)下形成的,而相对较低的温度则较高。热液系统的一部分(110-146 m)(从类似于140A摄氏度到类似180A摄氏度)包括陆源和新形成的粘土矿物的混合物。这里保存了陆源伊利石。对混合层伊利石-蒙脱石的照明进行了非透明化处理。陆源蒙脱石消失,形成具有5-10%蒙脱石层的绿泥石-蒙脱石。在较高的区间(低至约110 mbsf)中,陆源粘土矿物的成分保持不变。它们由主要的混合层伊利石-蒙脱石和蒙脱石,次要伊利石,具有5%蒙脱石层的混合层绿泥石-蒙脱石,具有30%蒙脱石层的混合层高岭石-蒙脱石和高岭石组成。粘土矿物的这种成分在477孔剖面中58-105 m的基岩侵入沉积层的影响下发生了变化。最显着的变化是在50-58 m的基岩上方8 m厚的构件中注意到的。 。该区间的上部是陆源混合层伊利石-蒙脱石的贫瘠部分,被新形成的三面体蒙脱石(皂石)代替。同时,保留了陆源性二八面体蒙脱石(蒙脱土)。窗台基部下面的单元顶部,土质粘土矿物的成分保持不变。

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  • 来源
    《Lithology and mineral resources》 |2016年第4期|243-261|共19页
  • 作者单位

    Russian Acad Sci, Inst Geol, Pyzhevskii Per 7, Moscow 119017, Russia;

    Russian Acad Sci, Inst Geol, Pyzhevskii Per 7, Moscow 119017, Russia;

    Russian Acad Sci, Inst Geol, Pyzhevskii Per 7, Moscow 119017, Russia;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
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