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首页> 外文期刊>Meteoritics & planetary science >The formation and alteration of the Renazzo-like carbonaceous chondrites III: Toward understanding the genesis of ferromagnesian chondrules
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The formation and alteration of the Renazzo-like carbonaceous chondrites III: Toward understanding the genesis of ferromagnesian chondrules

机译:雷纳佐样碳质球粒陨石的形成与变迁III:旨在了解铁磁球粒陨石的成因

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To better understand the formation conditions of ferromagnesian chondrules from the Renazzo-like carbonaceous (CR) chondrites, a systematic study of 210 chondrules from 15 CR chondrites was conducted. The texture and composition of silicate and opaque minerals from each observed FeO-rich (type II) chondrule, and a representative number of FeO-poor (type I) chondrules, were studied to build a substantial and self-consistent data set. The average abundances and standard deviations of Cr2O3 in FeO-rich olivine phenocrysts are consistent with previous work that the CR chondrites are among the least thermally altered samples from the early solar system. Type II chondrules from the CR chondrites formed under highly variable conditions (e.g., precursor composition, redox conditions, cooling rate), with each chondrule recording a distinct igneous history. The opaque minerals within type II chondrules are consistent with formation during chondrule melting and cooling, starting as S-and Ni-rich liquids at 988-1350 degrees C, then cooling to form monosulfide solid solution (mss) that crystallized around olivine/pyroxene phenocrysts. During cooling, Fe, Ni-metal crystallized from the S-and Ni-rich liquid, and upon further cooling mss decomposed into pentlandite and pyrrhotite, with pentlandite exsolving from mss at 400-600 degrees C. The composition, texture, and inferred formation temperature of pentlandite within chondrules studied here is inconsistent with formation via aqueous alteration. However, some opaque minerals (Fe, Ni-metal versus magnetite and panethite) present in type II chondrules are a proxy for the degree of whole-rock aqueous alteration. The texture and composition of sulfide-bearing opaque minerals in Graves Nunataks 06100 and Grosvenor Mountains 03116 suggest that they are the most thermally altered CR chondrites.
机译:为了更好地了解类雷纳佐碳质(CR)球墨铸铁锰铁球粒的形成条件,系统地研究了15种CR球粒陨石的210个球粒。研究了每个观察到的富FeO(II型)球状晶体和代表性FeO含量低(I型)球状晶体的硅酸盐和不透明矿物的质地和组成,以建立一个基本且自洽的数据集。富FeO橄榄石表晶中Cr2O3的平均丰度和标准偏差与先前的研究一致,即CR球粒陨石是早期太阳系中热变化最少的样品之一。在高度可变的条件下(例如前驱体组成,氧化还原条件,冷却速率)形成的CR球状晶体的II型球状晶体,每个球状晶体都记录了不同的火成历史。 II型球粒中不透明的矿物与球粒熔融和冷却过程中的形成相一致,从988-1350摄氏度下富含S和Ni的液体开始,然后冷却以形成单硫化物固溶体(mss),该固溶体在橄榄石/辉石苯酚晶体周围结晶。在冷却过程中,Fe,Ni金属会从富含S和Ni的液体中结晶出来,然后进一步冷却,使mss分解为绿铁矿和磁黄铁矿,并在400-600摄氏度的温度下从MSs中溶解出五氧化二铁。组成,织构和推断形成此处研究的软骨中的五芒石的温度与通过水蚀蚀变形成的温度不一致。但是,II型球粒中存在的一些不透明矿物(Fe,Ni-金属与磁铁矿和方铁矿)可以替代整个岩石含水蚀变的程度。 Graves Nunataks 06100和Grosvenor山03116中含硫化物的不透明矿物的质地和组成表明,它们是变化最剧烈的CR球粒陨石。

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