Mineralogy of new Antarctic achondrites with affinity to Lodran and a model of their evolution in an asteroid

H. Takeda, H. Mori, T. Hiroi, J. Saito
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引用次数: 48

Abstract

— We studied five new Antarctic achondrites, MacAlpine Hills (MAC) 88177, Yamato (Y)74357, Y75274, Y791491 and Elephant Moraine (EET)84302 by mineralogical techniques to gain a better understanding of the mineral assemblages of a group of meteorites with an affinity to Lodran (stony-iron meteorite) and their formation processes. This group is being called lodranites. These meteorites contain major coarse-grained orthopyroxene (Opx) and olivine as in Lodran and variable amounts of FeNi metal and troilite etc. MAC88177 has more augite and less FeNi than Lodran; Y74357 has more olivine and contains minor augite; Y791491 contains in addition plagioclase. EET84302 has an Acapulco-like chondritic mineral assembladge and is enriched in FeNi metal and plagioclase, but one part is enriched in Opx and chromite. The EET84302 and MAC88177 Opx crystals have dusty cores as in Acapulco. EET84302 and Y75274 are more Mg-rich than other members of the lodranite group, and Y74357 is intermediate. Since these meteorites all have coarse-grained textures, similar major mineral assemblages, variable amounts of augite, plagioclase, FeNi metal, chromite and olivine, we suggest that they are related and are linked to a parent body with modified chondritic compositions. The variability of the abundances of these minerals are in line with a proposed model of the surface mineral assemblages of the S asteroids. The mineral assemblages can best be explained by differing degrees of loss or movements of lower temperature partial melts and recrystallization, and reduction. A portion of EET84302 rich in metal and plagioclase may represent a type of component removed from the lodranite group meteorites. Y791058 and Caddo County, which were studied for comparison, are plagioclase-rich silicate inclusions in IAB iron meteorites and may have been derived by a similar process but in a different body.
与洛德兰有亲缘关系的南极新无球粒陨石的矿物学及其在小行星上的演化模型
利用矿物学技术对MacAlpine Hills (MAC) 88177、Yamato (Y)74357、Y75274、Y791491和Elephant Moraine (EET)84302这5颗新发现的南极无球粒陨石进行了研究,以更好地了解一组与Lodran(石铁陨石)有亲缘关系的陨石的矿物组合及其形成过程。这个群体被称为洛德兰人。这些陨石主要含有粗粒正辉石(Opx)和橄榄石(如Lodran),以及不同数量的FeNi金属和三辉石等。MAC88177比Lodran有更多的auguite和更少的FeNi;Y74357中橄榄石较多,含少量奥辉石;Y791491含有额外的斜长石。EET84302具有类似阿卡普尔科的球粒矿物组合,富集FeNi金属和斜长石,但部分富集Opx和铬铁矿。EET84302和MAC88177 Opx晶体在阿卡普尔科有灰尘的核心。EET84302和Y75274的富镁量高于其他洛云母族成员,而Y74357是中间的。由于这些陨石均具有粗粒结构、相似的主要矿物组合、不同数量的辉长岩、斜长石、FeNi金属、铬铁矿和橄榄石,我们认为它们是相互关联的,并且与一个具有改良球粒陨石组成的母体有关。这些矿物丰度的变化与提出的S小行星表面矿物组合模型一致。矿物组合可以用低温部分熔体的不同程度的损失或移动、再结晶和还原来最好地解释。EET84302中富含金属和斜长石的部分可能代表了一种从菱长石群陨石中分离出来的成分。比较研究的Y791058和Caddo County是IAB铁陨石中富含斜长石的硅酸盐包裹体,可能是由类似的过程产生的,但在不同的体中。
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