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Testing the ureilite projectile hypothesis for the El'gygytgyn impact: determination of siderophile element abundances and Os isotope ratios in ICDP drill core samples and melt rocks

机译:测试El'gygytgyn影响的尿素岩弹丸假说:ICDp钻芯岩样和熔岩中嗜铁元素丰度和Os同位素比的测定

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摘要

The geochemical nature of the impactites from International Continental Scientific Drilling Project-El'gygytgyn lake drill core 1C is compared with that of impact melt rock fragments collected near the western rim of the structure and literature data. Concentrations of major and trace elements, with special focus on siderophile metals Cr, Co, Ni, and the platinum group elements, and isotope ratios of osmium (Os), were determined to test the hypothesis of an ureilite impactor at El'gygytgyn. Least squares mixing calculations suggest that the upper volcanic succession of rhyolites, dacites, and andesites were the main contributors to the polymict impact breccias. Additions of 2-13.5 vol% of basaltic inclusions recovered from drill core intervals between 391.6 and 423.0 mblf can almost entirely account for the compositional differences observed for the bottom of a reworked fallout deposit at 318.9 mblf, a polymict impact breccia at 471.4 mblf, and three impact melt rock fragments. However, the measured Os isotope ratios and slightly elevated PGE content (up to 0.262 ng g(-1) Ir) of certain impactite samples, for which the CI-normalized logarithmic PGE signature displays a relatively flat (i.e., chondritic) pattern, can only be explained by the incorporation of a small meteoritic contribution. This component is also required to explain the exceptionally high siderophile element contents and corresponding Ni/Cr, Ni/Co, and Cr/Co ratios of impact glass spherules and spherule fragments that were recovered from the reworked fallout deposits and from terrace outcrops of the Enmyvaam River approximately 10 km southeast of the crater center. Mixing calculations support the presence of approximately 0.05 wt% and 0.50-18 wt% of ordinary chondrite (possibly type-LL) in several impactites and in the glassy spherules, respectively. The heterogeneous distribution of the meteoritic component provides clues for emplacement mechanisms of the various impactite units.
机译:将国际大陆科学钻探计划-El'gygytgyn湖钻芯1C的撞击物的地球化学性质与在结构和文献数据的西缘附近收集的撞击熔岩碎片的地球化学性质进行了比较。确定主要和微量元素的浓度,重点关注嗜铁金属Cr,Co,Ni和铂族元素,以及is(Os)的同位素比,以检验El'gygytgyn的尿素石撞击器的假设。最小二乘混合计算表明,流纹岩,dacits和安山岩的上部火山演替是造成多微生物撞击角砾岩的主要因素。从391.6至423.0 mblf的钻芯区间中回收的2-13.5 vol%的玄武岩夹杂物几乎可以完全解释在318.9 mblf的返工沉降矿床底部,471.4 mblf的多粒冲击角砾岩和三个撞击融化的岩石碎片。但是,某些撞击矿样品的测得的Os同位素比和PGE含量略高(高达0.262 ng g(-1)Ir),其CI标准化对数PGE标记显示出相对平坦的(即软骨状)模式只能通过结合少量的陨石贡献来解释。还需要该组件来说明异常高的亲铁元素含量以及从再加工的沉积物沉积物和恩梅瓦姆阶地露头中回收的冲击玻璃球和球碎片的相应Ni / Cr,Ni / Co和Cr / Co比值火山口中心东南约10公里的河流。混合计算支持分别在几个撞击矿和玻璃球中存在约0.05 wt%和0.50-18 wt%的普通球粒陨石(可能是LL型)。陨石成分的非均质分布为各种撞击岩单元的侵位机制提供了线索。

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