Elemental Chemostratigraphy of the Late Neoproterozoic & Early Cambrian Sediments in Oman

R. Mccabe, I. Gómez-Pérez, H. Rawahi, K. Bergmann, T. Pearce, J. Dawans, B. Baloushi
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Abstract

Elemental chemostratigraphy is employed on outcrop and well sections in order to produce a regional surface to subsurface correlation framework of the late Neoproterozoic and early Cambrian sediments in Oman. Samples have been analysed using ICP techniques, with high-resolution data acquired for 48 elements. The key elements employed to produce the chemostratigraphic framework are Si, Al, Ca, Mg, Ti, Zr, Y, Th, the rare earth elements, Cr, Mo and U. The relative abundance of these elements are interpreted be influenced by changes in lithology, detrital heavy minerals and redox-sensitive authigenic minerals that themselves are interpreted to reflect temporal variations in environment, weathering and sediment provenance. Based on marked variations in the key elements and derived element ratios, the study interval is divided into six chemostratigraphic sequences and six higher-resolution chemostratigraphic packages. The chemostratigraphic zones can be correlated with confidence from the outcrop to subsurface and, in conjunction with other disciplines, is being employed to refine the lithostratigraphy of the Nafun and Ara Groups in the subsurface of south Oman.
阿曼新元古代晚期和早寒武世沉积物的元素化学地层学
为了建立阿曼地区新元古代晚期和早寒武世沉积的区域性地表与地下对比格架,在露头剖面和井剖面上应用元素化学地层学。使用ICP技术对样品进行了分析,获得了48种元素的高分辨率数据。形成化学地层格架的关键元素是Si、Al、Ca、Mg、Ti、Zr、Y、Th以及稀土元素Cr、Mo和u。这些元素的相对丰度被解释为受岩性、碎屑重矿物和氧化还原敏感自生矿物变化的影响,这些元素本身被解释为反映了环境、风化和沉积物来源的时间变化。根据关键元素和衍生元素比值的显著变化,将研究层段划分为6个化学地层层序和6个高分辨率化学地层包。化学地层学带可以与从露头到地下的可信度相关联,并与其他学科一起用于改进阿曼南部地下Nafun和Ara群的岩石地层学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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