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Mineralogy and geochemistry of the Late Triassic Baluti Formation, Northern Iraq

机译:北伊拉克北部三叠纪鲍鲁氏肉狗形成的矿物学和地球化学

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摘要

The petrography and geochemistry of clastic rocks collected from two sections from the Baluti Formation northern Iraq, have been investigated to infer the depositional environment of the Late Triassic Baluti Formation. Petrographic study of the carbonate unit shows that they consist mainly of heterogeneous poorly sorted grainstones and packstones, ooids, intraclasts, peloids, bioclasts and green algae (Halimeda). The abundant and heterogeneous size of these constituents suggests a subtidal lagoon/oolitic shoal depositional environment with an open marine water circulation. Trace element concentrations of the shales and marlstones reveal a wide difference in the depositional environment. The paleoclimate proxies (C-value, Sr/Cu, Rb/Sr, Ga/Rb, and Sr/Ba ratios) and presence of illite suggest a hot and arid to semiarid climates during the deposition of the Buluti sediments, which coincide with the Late Triassic global warming. The combined use of the Cd/Mo and Co*Mn proxies indicate the deposition mainly in open marine settings on the continental margin associated with upwelling and subordinate restricted marine settings. Trace element redox proxies (V/(V + Ni), Th/U, V/Cr, Ni/Co, and V/Ni ratios indicates anoxic to dysoxic to marginally oxic marine conditions. This difference in paleoredox conditions is likely to arise from the variation in the hydrographic conditions of the depositional basin including water depth, upwelling oxidation degree in the water column and salinity.
机译:已经研究了从伊拉克北部北北北部两段收集的碎屑岩的岩岩和地球化学,以推断出晚期三叠系肉桂形成的沉积环境。对碳酸盐单位的岩手研究表明,它们主要由异质性不良分类的晶粒骨和包装酮,黄液,颅内,蛋白,生物素和绿藻(Halimeda)组成。这些成分的丰富和异质尺寸表明,具有开放的海洋水循环的阴性泻湖/鲕粒浅沉积环境。痕量元素浓度的Shales和Marlstones揭示了沉积环境的广泛差异。古古古(C值,SR / Cu,RB / SR,GA / RB和SR / BA比率)和Imlite的存在表明在沉积沉积物的沉积过程中,炎热,干旱地对半干旱气候,这与晚期三叠纪全球变暖。 CD / Mo和Co * Mn代理的组合使用主要在与Uppelling和从属受限制的海洋环境相关联的大陆边缘的开放海洋环境中的沉积。痕量元素氧化还原代理(v /(v + ni),th / u,v / cr,ni / co和v / ni比率表明缺氧到Dysfisic到脊髓植物疾病。古罗福岛条件的这种差异可能会出现沉积盆地的水文条件的变化,包括水深,水柱和盐度升高的氧化程度。

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