论文标题
Enstatite陨石的同位钾组成
Potassium Isotopic Compositions of Enstatite Meteorites
论文作者
论文摘要
在许多同位素系统中,ENSTATITE软骨和aubrites是陨石,在经历质量无关和质量依赖的同位素分馏的许多同位素系统中显示最接近地球的相似之处。由于过去获得高精度K同位素组合物的分析挑战,因此eNstatite陨石与地球之间K同位素组成的潜在差异仍然不确定。我们报告了八个enstatite软骨和四个赤铁矿的第一个高精度K同位素组合物,发现Enstatite陨石之间K同位素组成存在显着变化(从-2.34 Permil到-0.18 Permil)。然而,几乎所有enstatite陨石的K同位素组成散布在大块硅酸盐(BSE)值周围。八个Enstatite软管(-0.47 +/- 0.57 Persil)的平均K同位素组成与BSE值(-0.48 +/- 0.03 Permil)没有区别,因此进一步证实了地球的构件和Enstatite Ateorite toce块之间的同位素相似性。我们发现K同位素组合物与化学基团,岩石学类型,冲击学和陆地风化条件没有相关性。但是,Enstatite陨石中K同位素的变化可以归因于母体的处理。我们的主要aubrite MIL 13004的样本是异常的,并且具有极轻的同位素组成(Delta 41K = -2.34 +/- 0.12 persil)。我们将这种独特的K同位素特征归因于样品中大量的djerfisherite夹杂物的存在,因为预计在与硅酸盐的平衡交换过程中,预计这种含有K的硫化物矿物在39K中富集。
Enstatite chondrites and aubrites are meteorites that show the closest similarities to the Earth in many isotope systems that undergo mass-independent and mass-dependent isotope fractionations. Due to the analytical challenges to obtain high-precision K isotopic compositions in the past, potential differences in K isotopic compositions between enstatite meteorites and the Earth remained uncertain. We report the first high-precision K isotopic compositions of eight enstatite chondrites and four aubrites and find that there is a significant variation of K isotopic compositions among enstatite meteorites (from -2.34 permil to -0.18 permil). However, K isotopic compositions of nearly all enstatite meteorites scatter around the Bulk Silicate Earth (BSE) value. The average K isotopic composition of the eight enstatite chondrites (-0.47 +/- 0.57 permil) is indistinguishable from the BSE value (-0.48 +/- 0.03 permil), thus further corroborating the isotopic similarity between Earth' building blocks and enstatite meteorite precursors. We found no correlation of K isotopic compositions with the chemical groups, petrological types, shock degrees, and terrestrial weathering conditions; however, the variation of K isotopes among enstatite meteorite can be attributed to the parent body processing. Our sample of the main group aubrite MIL 13004 is exceptional and has an extremely light K isotopic composition (delta 41K= -2.34 +/- 0.12 permil). We attribute this unique K isotopic feature to the presence of abundant djerfisherite inclusions in our sample because this K-bearing sulfide mineral is predicted to be enriched in 39K during equilibrium exchange with silicates.