Permian-Triassic flood basalts in the pre-Jurassic basement of the Arctic zone of the West Siberian platform

S. Berzin, K. Ivanov, E. Pankrushina, N. Soloshenko
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Abstract

Research subject. Permian-Triassic flood basalts in the basement of the Arctic zone of the West Siberian Platform locate mainly in graben-rift structures. Flood basalts in this region remain to be understudied in comparison with other areas of its distribution, mainly due to the significant depth of their occurrence (4–6 km).Materials and methods. 36 core samples from 11 superdeep and deep boreholes were studied. Isotopic ratios were measured on mass spectrometers NEPTUNE PLUS (Nd, Sm) and TRITON PLUS (Rb, Sr). Bitumen were studied using a Raman spectrometer LabRAM HR800 Evolution. The Raman spectra were deconvoluted (“Peak fitting” procedure), and the bitumen conversion temperature was estimated.Results. About half of the samples of volcanic rocks underwent metamorphism of the prehnite-pumpellite and locally greenschist facies or intense low-temperature hydrothermal alteration. The studied basalts are close to typical flood basalts and are somewhat similar to island-arc volcanic rocks in terms of their geochemical characteristics. For the first time, thin inclusions of bitumen were found in the amygdalae of Permian-Triassic basalts in the superdeep borehole Tyumenskaya SG-6 at a depth of 7310.6 m. A high similarity of the studied volcanics by geochemical characteristics and the isotopic composition of Sr and Nd with the flood basalts of the Siberian platform is shown.Conclusions. The presence of a negative Ta, Nb, Ti anomaly, as well as a negative Ce anomaly, in some of the analyzed samples indicates a possible contamination of the basalts by island arc volcanics and volcanogenic-sedimentary rocks. The temperature of transformation of bitumen in inclusions in basalts from the well Tyumenskaya SG-6 according to Raman spectroscopy is estimated at 150–300°C and generally corresponds to the temperature of metamorphism of the host basalts. The presence of bitumen in the amygdalae may indicate the migration of hydrocarbons through the basalts.
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西西伯利亚地台北极地区前侏罗纪基底的二叠纪-三叠纪洪水玄武岩
研究课题。西西伯利亚地台北极带基底二叠纪—三叠纪洪水玄武岩主要位于地堑-裂谷构造中。与其他地区的洪泛玄武岩分布相比,该地区的洪泛玄武岩研究仍然不足,主要是由于其出现深度较大(4-6 km)。材料和方法。研究了11个超深和深钻孔的36个岩心样品。用质谱仪NEPTUNE PLUS (Nd, Sm)和TRITON PLUS (Rb, Sr)测量同位素比值。采用LabRAM HR800 Evolution拉曼光谱仪对沥青进行了研究。对拉曼光谱进行反卷积(“峰拟合”程序),并估计沥青转化温度。近一半的火山岩样品经历了前亚花岗岩-泵状岩和局部绿片岩相的变质作用或强烈的低温热液蚀变。研究的玄武岩接近典型的洪泛玄武岩,在地球化学特征上与岛弧火山岩有些相似。在深7310.6 m的Tyumenskaya SG-6超深钻孔中,首次在二叠系—三叠系玄武岩杏仁核中发现了薄包裹体沥青。从地球化学特征和Sr、Nd同位素组成来看,所研究的火山岩与西伯利亚地台洪水玄武岩具有较高的相似性。部分分析样品中存在负Ta、Nb、Ti异常和负Ce异常,表明玄武岩可能受到岛弧火山和火山-沉积岩的污染。根据拉曼光谱估计,Tyumenskaya SG-6井玄武岩包裹体沥青的转化温度在150 ~ 300℃之间,与主玄武岩变质温度基本一致。杏仁核中沥青的存在可能表明碳氢化合物通过玄武岩迁移。
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