首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >THE NORMAL PLANETARY NOBLE GAS COMPONENT IN PRIMITIVE CHONDRITES - COMPOSITIONS, CARRIER, AND METAMORPHIC HISTORY
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THE NORMAL PLANETARY NOBLE GAS COMPONENT IN PRIMITIVE CHONDRITES - COMPOSITIONS, CARRIER, AND METAMORPHIC HISTORY

机译:原始软骨中的普通行星稀有气体成分-成分,载体和元代历史

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摘要

In order to study the characteristics of P1, the dominant ''normal planetary'' noble gas component in chondrites, we prepared HF/HCl residues for fourteen chondrites from seven chondrite classes. We chose relatively unmetamorphosed meteorites to study the primary characteristics of the p1 component, but we also selected meteorites covering a range of petrologic types to study the effects of mild metamorphism on the P1 component. The noble gases from each residue were measured by stepped pyrolysis. Data from the Orgueil (CI), Semarkona (LL3.0), Bishunpur (LL3.1), and Krymka (LL3.1) residues were used to derive precise compositions for Ar-P1, Kr-P1, and Xe-P1. Our compositions differ only slightly from those obtained by closed-system chemical oxidation of HF/HCl residues (Wieler et al., 1991, 1992), which indicates that the compositions are now reasonably well known. The isotopic compositions of P1 gases are similar to, but distinct from, those of the low-temperature P3 component in presolar diamonds. By comparing the characteristics and compositions of P1 gases and their carrier from meteorites with different metamorphic histories, we found several systematic trends. With increasing metamorphic grade, p1 abundance decreases, median release temperature increases, the isotopic composition evolves as gases from other carriers are retrapped into the P1 carrier, the elemental ratios change slightly, and the P1 carrier becomes more resistant to chemical oxidation. Some small systematic differences were also observed between unmetamorphosed meteorites of different classes, including lower matrix-normalized p1 abundances in EH and CV chondrites compared to Orgueil and the unequilibrated ordinary chondrites, and small differences in elemental ratios between classes. Some of the differences between classes may reflect thermal processing of the P1 carrier and associated material in the accretion disk. Our observations indicate that the characteristics of the P1 noble-gas component, in most if not all meteorites, no longer exclusively reflect the processes that originally trapped the gases into their carrier. [References: 66]
机译:为了研究球粒陨石中占主导地位的``正常行星''稀有气体P1的特性,我们从七个球粒陨石类别中制备了14个球粒陨石的HF / HCl残留物。我们选择了相对未变质的陨石来研究p1组分的主要特征,但是我们还选择了覆盖多种岩石学类型的陨石来研究轻度变质对P1组分的影响。通过分步热解法测量每种残留物中的稀有气体。来自Orgueil(CI),Semarkona(LL3.0),Bishunpur(LL3.1)和Krymka(LL3.1)残基的数据用于得出Ar-P1,Kr-P1和Xe-P1的精确组成。我们的组合物与通过HF / HCl残留物的闭环化学氧化制得的组合物仅略有不同(Wieler等人,1991,1992),这表明该组合物现已众所周知。 P1气体的同位素组成与太阳前钻石中低温P3组分的同位素组成相似但又不同。通过比较具有不同变质历史的陨石中P1气体及其载体的特征和组成,我们发现了几种系统趋势。随着变质等级的增加,p1的丰度降低,中值释放温度升高,随着其他载体的气体重新捕集到P1载体中,同位素组成发生变化,元素比略有变化,P1载体变得更耐化学氧化。在不同类别的未变质陨石之间也观察到一些小的系统差异,包括与Orgueil相比,EH和CV球粒陨石的基质归一化p1丰度和未平衡的普通球粒陨石,以及各类别之间元素比的细微差异。类之间的某些差异可能反映了P1载体和吸积盘中相关材料的热处理。我们的观察结果表明,P1稀有气体成分的特性,即使不是全部,即使在大多数陨石中,也不再完全反映最初将气体捕获到其载体中的过程。 [参考:66]

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