B. Vanuyta河(Kara astrobleme,俄罗斯)岩石的复杂特征

Q4 Earth and Planetary Sciences
N. I. Maksimenko, T. G. Shumilova, V. V. Ulyashev
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The structural-textural and petrochemical features of the matrix, fragments of impact glasses, and lithoclasts of suevites from the B. Vanuyta river were characterized. The suevite matrix was found to exhibit an intensely sintered character and to be presented by feldspar, quartz, calcite, chlorite, muscovite, glauconite, and titanite. Lithoclasts include siltstones, sandstones, limestones, mudstones, and shales. Vitroclasts are characterized by angular and irregular morphology with different border patterns, and spotted, fluid, and porous textures. The similarity of the chemical composition of siltstone clusters and similar target rocks confirms the genetic relationship and the leading role of this type of target rocks in the formation of the studied suevites. The proximity in the composition of the impact glasses of the studied suevites and the glasses of type I and II suevites indicates the formation of suevite vitroclasts in the river B. 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引用次数: 0

摘要

研究课题。来自卡拉阿斯特勒姆东部地区的苏维人,位于Bolshaya Vanuyta河流域。的目标。目的:鉴别瓦努塔河细纹岩类型,厘清其面相特征。材料。在B. Vanuyta河、Anaroga河、Kara河和Sopchayu河流域收集的手大小的suveites样本,以及在Kara陨石坑(Halmeryu河、Sayakha河、Putyu河、Anaroga河和Lavovyi河)外收集的粉砂岩样本。样品用于制备抛光薄片和粉末样品,用于分析工作。方法。现场观察,光学和电子扫描显微镜,和硅酸盐分析湿化学方法。结果和结论。研究了B. Vanuyta河苏维岩的基质、冲击玻璃碎片和岩屑的结构-结构和石化特征。镁铝石基体具有强烈的烧结特征,主要由长石、石英、方解石、绿泥石、白云母、海绿石和钛矿组成。岩屑包括粉砂岩、砂岩、灰岩、泥岩和页岩。玻璃碎屑具有棱角分明、不规则的形态和不同的边缘图案,具有斑点状、流体状和多孔状的结构。粉砂岩簇与相似目标岩化学成分的相似性证实了这类目标岩在研究的镁质岩形成过程中的成因关系和主导作用。所研究的苏伟岩体的冲击玻璃与I型和II型苏伟岩体玻璃的成分接近,表明B. Vanuyta河的苏伟岩体碎屑是由类似的原岩粉砂岩和石灰石中的粘土组分形成的。碎屑岩的基质岩化特征、形态和性质表明,B. Vanuyta河碎屑岩是在相对高温条件下形成的气动力相岩石,在结构上位于气动力相碎屑冲击层序的下部。所研究的岩石在原岩组成上与ⅰ型苏威岩相近,但形成条件不同。与II型榴辉岩相特征相似,但目标岩碎片组成不同。确定了卡拉星闪岩类型的主导因素是其化学成分,同时根据其形成相环境的特殊性,可以对其类型进行更精细的细分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Complex characteristics of suevites at the B. Vanuyta river (Kara astrobleme, Russia)
Research subject. Suevites from the eastern sector of the Kara astrobleme, located in the basin of the Bolshaya Vanuyta river. Aim. To identify the suevitic type and to clarify the facial features of the suevites from the B. Vanuyta River. Materials . Hand-size samples of suevites collecteed in the basins of B. Vanuyta, Anaroga, Kara, and Sopchayu rivers, as well as samples of siltstones collected outside the Kara crater (rivers Halmeryu, Sayakha, Putyu, Anaroga and the creek Lavovyi). The samples were used for preparing polished thin sections and powder specimens for analytical works. Methods . Field observations, optical and electron scanning microscopy, and silicate analysis by the wet chemical method. Results and conclusions . The structural-textural and petrochemical features of the matrix, fragments of impact glasses, and lithoclasts of suevites from the B. Vanuyta river were characterized. The suevite matrix was found to exhibit an intensely sintered character and to be presented by feldspar, quartz, calcite, chlorite, muscovite, glauconite, and titanite. Lithoclasts include siltstones, sandstones, limestones, mudstones, and shales. Vitroclasts are characterized by angular and irregular morphology with different border patterns, and spotted, fluid, and porous textures. The similarity of the chemical composition of siltstone clusters and similar target rocks confirms the genetic relationship and the leading role of this type of target rocks in the formation of the studied suevites. The proximity in the composition of the impact glasses of the studied suevites and the glasses of type I and II suevites indicates the formation of suevite vitroclasts in the river B. Vanuyta by a similar protolith – siltstones and a clay component of the limestones. The matrix lithification character, morphology and nature of the vitroclast outlines indicate that the suevites from the B. Vanuyta river are the rocks of an aerodynamic facies formed under relatively high-temperature conditions, which structurally lie at the lower part of the detrital impactites sequence of the aerodynamic facies. The studied rocks are close to the type I suevites by the composition of the protolith and differ in the conditions of their formation. With the type II suevites, they have similar facies characteristics, but differ in the composition of the target rocks fragments. It is determined that the leading factor in the typification of suevites from the Kara astrobleme is the chemical composition, at the same time, the types can be subdivided more fractionally based on the specifics of the facies environments of their formation.
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Litosfera
Litosfera Earth and Planetary Sciences-Geophysics
CiteScore
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