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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Trace element geochemistry of K-rich impact spherules from howardites
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Trace element geochemistry of K-rich impact spherules from howardites

机译:钙锰矿富钾冲击球的痕量元素地球化学

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摘要

The howardite–eucrite–diogenite (HED) achondrites are a group of meteorites that probably originate from the asteroid Vesta. Howardites are complex polymict breccias that sometimes contain, in addition to various rock debris, impact melt glasses which show an impressive range of compositions. In this paper we report on the geochemistry and O isotopes of a series of 6 Saharan polymict breccias (4 howardites and 2 polymict eucrites), and on the trace element abundances of high-K impact spherules found in two of them, Northwest Africa (NWA) 1664 and 1769, which are likely paired. The high-K impact spherules found in the howardites NWA 1664 and NWA 1769 display remarkable trace element patterns.Compared to eucrites or howardites, they all show prominent enrichments in Cs, Rb, K, Li and Ba, strong depletion in Na, while the REE and other refractory elements are unfractionated. These features could not have been generated during impact melting of their host howardites, nor other normal HED target materials. The involvement of Na-poor rocks, and possibly rocks of granitic composition, appears likely. Although these lithologies cannot be well constrained at present,our results demonstrate that the surface of Vesta is certainly more diverse than previously thought. Indeed, despite the large number of available HED meteorites (about 1000 different meteorites), the latter are probably not sufficient to describe the whole surface of their parent body.
机译:钙锰矿-钙长石-辉长岩(AED)陨石是一组陨石,可能起源于小行星Vesta。芒硝石是复杂的多角砾角砾岩,除了各种岩石碎屑外,有时还含有冲击熔玻璃,这些熔玻璃显示出令人印象深刻的组成范围。在本文中,我们报告了一系列6种撒哈拉多角砾岩(4种钙华榴石和2种多晶珍珠岩)的地球化学和O同位素,以及在其中两个西北非洲(NWA)中发现的高K冲击球的痕量元素丰度)可能是配对的1664和1769。在NWA 1664和NWA 1769的辉绿岩中发现的高K冲击球表现出显着的痕量元素形态。 REE和其他耐火元素是普通的。这些特征在其主体榴how石或其他普通HED靶材的冲击熔化过程中无法生成。含钠量低的岩石,可能还有花岗岩成分的岩石,似乎很可能被卷入。尽管目前无法很好地限制这些岩性,但我们的结果表明,维斯塔的表面肯定比以前认为的要多样化。确实,尽管有大量可用的HED陨石(约1000种不同的陨石),但后者可能不足以描述其母体的整个表面。

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