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Sedimentology, sequence-stratigraphy, and geochemical variations in the Mesoproterozoic Nonesuch Formation, northern Wisconsin, USA

机译:沉积物,序列 - 地层和Mespostroicooice Nonesuch形成的地球化学变化,威斯康星州北部威斯康星州

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We use core descriptions and portable X-ray fluorescence analyses to identify lithofacies and strati graphic surfaces for the Mesoproterozoic Nonesuch Formation within the Ashland syncline, Wisconsin. We group lithofacies into facies associations and construct a sequence stratigraphic framework based on lithofacies stacking and stratigraphic surfaces. The fluvial-alluvial facies association (upper Copper Harbor Conglomerate) is overlain across a transgressive surface by the fluctuating-profundal facies association (lower Nonesuch Formation). The fluctuating-profundal fades association comprises a retrogradational sequence set overlain across a maximum flooding surface by an aggradational-progradational sequence set comprising fluctuating-profundal, fluvial-lacustrine, and fluvial-alluvial facies associations (middle Nonesuch through lower Freda Formations). Lithogeochemistry supports sedimentologic and stratigraphic interpretations. Fe/S molar ratios reflect the oxidation state of the lithofacies; values are most depleted above the maximum flooding surface where lithofacies are chemically reduced and are greatest in the chemically oxidized lithofacies. Si/Al and ZriAl molar ratios reflect the relative abundance of detrital heavy minerals vs. clay minerals; greater values correlate with larger grain size. Vertical facies association stacking records depositional environments that evolved from fluvial and alluvial, to balanced-fill lake, to overfilled lake, and returning to fluvial and alluvial. Elsewhere in the basin, where accommodation was greatest, some volume of fluvial-lacustrine facies is likely present below the transgressive stratigraphic surface. This succession of continental and lake-basin types indicates a predominant tectonic driver of basin evolution. Lithofacies distribution and geochemistry indicate deposition within an asymmetric half-graben bounded on the east by a west-dipping growth fault. While facies assemblages are lacustrine and continental, periodic marine incursions are probable, especially across maximum transgressive surfaces.
机译:我们使用核心描述和便携式X射线荧光分析,以识别山地苏克兰威斯康辛的中塞罗古古思角的岩散和Strati图形表面。我们将Lithofacies群体组成相协会,基于岩石曲线堆叠和地层表面构建序列地层框架。通过波动 - 平原相结合(下部非燃料形成),河流冲积面协会(上铜港集团)(上铜港砾岩)俯仰横跨受侵袭表面。波动 - 丰满的消退联系包括通过包括波动性 - 流域,氟尿和氟激烈相吻合(通过下弗雷达地层的中间非燃烧的液体冲积相结合俯视最大泛洪表面的逆行序列集。 Lithogeochemisty支持沉积学和地层解释。 Fe / S摩尔比反映了岩石酸的氧化状态;值最耗尽,最大洪水表面在化学氧化的岩型化学降低,最大。 Si / Al和Zrial摩尔比反映了碎屑重矿物与粘土矿物质的相对丰度;更大的值与较大的晶粒尺寸相关。垂直相结合堆叠记录从河流和冲积的沉积环境,从河流和冲积到平衡填充湖,以满足湖泊,并返回河流和冲积。在盆地的其他地方,在住宿最大的地方,一些体积的氟琉璃相片可能存在于暴力地层表面下方。这一连续的大陆和湖泊盆地类型表明了盆地进化的主要构造驱动器。锂外分布和地球化学表明,西浸的生长错误在东方的不对称半法中沉积。虽然面部组装是湖泊和大陆的,但定期的海洋侵入可能是可能的,特别是在最大侵袭性表面上。

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