Macrochondrules in Some Chondrites: 1. Structural-Mineralogical Characteristics

IF 0.5 Q4 MINERALOGY
V. Semenenko, A. Girich, K. O. Shkurenko, N. Kychan
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引用次数: 1

Abstract

The results of structural, mineralogical and chemical study of rare structural units of chondrites, macrochondrules and their fragments, found in five chondrites of different chemical groups and petrological types (Allende CV3, Krymka LL3.1, Saratov L4, "Velyka Balka" L4-5, Château-Renard L6), are given. Most of them are generally similar to ordinary chondrules and previously studied macrochondrules. They have a radial and porphyritic texture, consist of olivine and pyroxene, and are covered by a silicate rim, which is fine-grained in the macrochondrules of unequilibrated chondrites and coarse-grained in equilibrated ones. Only two macrochondrules among studied one’s are extraordinary and indicate specific conditions for their formation in the protoplanetary nebula. The first one, separated directly from the Allende chondrite, is characterized by the presence of a thin amorphous shell with a porous structure and with unambiguous sculpture features of instantaneous melting and solidification of its surface silicate layer. The second one, studied in a polished section of the Krymka meteorite, is characterized by a zonal structure and the presence of graphite grains and possibly bitumen inclusions. According to the SiO2/MgO ratio, its fine-grained silicate rim with rare graphite crystals and possibly bitumen inclusions corresponds to the fine-grained rims of ordinary chondrules, but is different from the carbonaceous material of meteorites.
一些球粒陨石中的大球粒:1。Structural-Mineralogical特点
本文给出了不同化学类群和岩石学类型(Allende CV3、Krymka LL3.1、Saratov L4、Velyka Balka L4-5、ch teau- renard L6)球粒陨石、大球粒陨石及其碎片的稀有结构单元的结构、矿物学和化学研究结果。它们大多与普通球粒和先前研究过的大球粒大致相似。它们具有放射状和斑状结构,由橄榄石和辉石组成,并被硅酸盐边缘覆盖,非平衡球粒陨石的大球粒颗粒细,平衡球粒陨石的大球粒颗粒粗。在所研究的大球粒中,只有两个是特别的,表明它们在原行星状星云中形成的特殊条件。第一个直接从阿连德球粒陨石中分离出来,其特点是存在一个具有多孔结构的薄无定形外壳,其表面硅酸盐层具有瞬间熔化和凝固的明确雕塑特征。第二个是在克里姆卡陨石的抛光部分研究的,其特征是带状结构,存在石墨颗粒,可能还有沥青包裹体。根据SiO2/MgO比值,其细粒硅酸盐边缘与罕见的石墨晶体和可能的沥青包裹体对应于普通球粒的细粒边缘,但与陨石的碳质物质不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
18
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