首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Siderophile element patterns, PGE nuggets and vapour condensation effects in Ni-rich quench chromite-bearing microkrystite spherules, similar to 3.24 GaS3 impact unit, Barberton greenstone belt, Kaapvaal Craton, South Africa
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Siderophile element patterns, PGE nuggets and vapour condensation effects in Ni-rich quench chromite-bearing microkrystite spherules, similar to 3.24 GaS3 impact unit, Barberton greenstone belt, Kaapvaal Craton, South Africa

机译:富含Ni的含铬铬铁矿微晶球体中的亲铁元素元素模式,PGE熔核和蒸汽冷凝效应,类似于3.24 GaS3冲击装置,Barberton绿岩带,Kaapvaal Craton,南非

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摘要

Energy dispersive spectrometry (EDS), laser ablation inductively coupled plasma mass spectrometry (LA-ICPMS) track analyses of chlorite-dominated quench-textured microkrystite spherules and LA-ICPMS spot analyses of intra-spherule Ni-rich skeletal quench chromites from the 3243 +/- 4 Ma Barberton S3 impact fallout unit (lower part of the Mapepe Formation, Fig Tree Group, Barberton greenstone belt, Kaapvaal Craton, South Africa) reveal fractionated siderophile and PGE trace element patterns corresponding to chondrite-contaminated komatiite/basalt compositions. The chlorites, interpreted as altered glass, contain sharp siderophile elements and PGE spikes inherited from decomposed metal and Ni-rich chromite particles. LA-ICPMS spot analysis identifies PGE-rich micronuggets in Ni-chromites (Ir similar to 12-100 ppm, Os similar to 9-86 ppm, Ru similar to 5-43 ppm) and lower levels of the volatile PGEs (Rh similar to 1-11 ppm, Pd similar to 0.68-0.96 ppm). Previously reported PGE anomalies in the order of hundreds of ppb in some Barberton microkrystite spherules are accounted for in terms of disintegration of PGE-rich micronuggets. Replacement of the Ni-chromites by sulphide masks primary chondritic patterns and condensation element distribution effects. High refractory/volatile PGE ratios pertain to both the chlorites and the Ni-rich chromites, consistent with similar compositional relations in microkrystite spherules from other impact fallout units in the Barberton greenstone belt and the Pilbara Craton, Western Australia. The near-consistent low Pt/Re and high V/Cr and V/Sc ratios in chlorite of the spherules, relative to komatiites, are suggestive of selective atmospheric condensation of the spherules which favored the relatively more refractory Re and V Selective condensation may also be supported by depletion in the volatile Yb relative to Sm. Ni-Cr relationships allow estimates of the proportion of precursor crustal and meteoritic components of the spherules. Mass balance calculations based on the iridium flux allow estimates of the order of magnitude of the diameter of the chondritic projectile. (c) 2006 Elsevier B.V. All rights reserved.
机译:能量分散光谱(EDS),激光烧蚀电感耦合等离子体质谱(LA-ICPMS)跟踪亚氯酸盐为主的淬火质微晶球体的分析,以及LA-ICPMS点分析来自3243 + /-4 Ma Barberton S3冲击沉降单元(南非Kaapvaal Craton的Barberton绿岩带,Mapberpe组的下部,无花果树群下部)揭示了对应于球粒陨石污染的玄武岩/玄武岩成分的分离的嗜铁粒和PGE痕量元素模式。亚氯酸盐被解释为玻璃变质,含有锋利的嗜铁元素和从分解的金属和富镍的亚铬酸盐颗粒继承的PGE尖峰。 LA-ICPMS斑点分析可鉴定出亚铬酸镍中富含PGE的微块(Ir近似于12-100 ppm,Os近似于9-86 ppm,Ru近似于5-43 ppm)和较低水平的挥发性PGEs(Rh近似于1-11 ppm,Pd类似于0.68-0.96 ppm)。先前报道的某些Barberton微晶球体中的PGE异常为数百ppb,这是由于富含PGE的微块的崩解所致。用硫化物代替亚铬酸镍掩盖了主要的软骨形态和冷凝元素分布效应。亚氯酸盐和富镍铬铁矿均具有较高的耐火材料/挥发性PGE比率,这与来自Barberton绿岩带和西澳大利亚Pilbara Craton的其他撞击沉降单元的微晶球体中相似的成分关系一致。相对于康明石,小球的绿泥石中近乎一致的低Pt / Re和高V / Cr和V / Sc比,暗示了小球的选择性大气冷凝,这有利于相对难熔的Re和V选择性冷凝也可能通过相对于Sm消耗挥发性Yb来支持。 Ni-Cr关系可以估算球体的前体地壳和陨石成分的比例。基于铱通量的质量平衡计算可以估算出软骨弹丸直径的数量级。 (c)2006 Elsevier B.V.保留所有权利。

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