碳化球粒陨石NWA 4446

Q4 Earth and Planetary Sciences Przeglad Geologiczny Pub Date : 2022-08-03 DOI:10.7306/2022.17
T. Przylibski, Konrad Blutstein, K. Łuszczek, Joanna Gruchot
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引用次数: 0

摘要

4446. Prz。513 - 526;作者对NWA 4446碳质球粒陨石进行了岩石学、矿物学和化学分析(整体化学成分和矿物化学成分的微观分析)。NWA 4446球粒陨石分为CV3、S2、W2。这颗陨石是一块岩石碎片,很可能来自小行星带外层绕太阳运行的c型小行星。它代表了太阳系外天体形成的最早阶段形成的物质。作为研究的结果,作者记录了基质和球粒中橄榄石晶体(Fa: 0.67-46.57 mol%)化学成分的变化范围更大,而辉石晶体(Fs: 0.90-3.35 mol%)化学成分的变化范围要小得多,这与用于陨石分类的数据相对照。这些陨石球粒的大小从0.5毫米到1毫米以上不等,它们的特征使得它们占陨石体积的60%左右,其中它们形成了许多结构和矿物品种PO, POP, BO, PP和RP球粒。其余40%的球粒陨石体积是由辉石、橄榄石、玻璃的小晶体以及不透明矿物组成的基质:硫化物、FeNi合金、天然铜和金颗粒、碳质物质和致密的cai。cai的矿物和化学组成表明,其主要矿物为千英石,伴生有透辉石和尖晶石。尖晶石和透辉石的化学组成与其总化学式非常相似,而千英石的化学组成则表现出明显的缺钠。在不透明矿物中,辉钼矿(ni3fe)占主导地位,硫化物以黄铁矿(FeS)和镁铁((Fe,Ni) 9s8)为代表。此外,还发现了含有金的天然铜颗粒和含有铂、镍和铜的天然金颗粒,其尺寸为几µm。考虑到上述不透明矿物(主要是Co和Cu)中所含的掺合物,NWA 4446的碳质球粒陨石母岩可以考虑与含Au和Pt的Fe、Ni、Co和Cu矿物矿化。这意味着,我们可以预期上述金属和硫化物的天然形式沉积在CV群- c型小行星的碳质球粒陨石母岩上。
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Chondryt węglisty NWA 4446
4446. Prz. 513–526; A b s t r a c t. The authors carried out petrographic, mineralogical, and chemical analyses (bulk chemical composition and microanalyses of mineral chemical composition) of NWA 4446 carbonaceous chondrite. NWA 4446 chondrite is classified as CV3, S2, W2. This meteorite is a rock fragment most likely from one of the C-type asteroids orbiting the Sun in the outer part of the asteroid belt. It represents the matter formed at the earliest stages of the formation of extrasolar bodies in the solar system. As a result of the research, the authors documented a wider range of variation in the chemical composition of olivine crystals (Fa: 0.67–46.57 mol%) in the matrix and chondrules, and a much narrower range of variation in the chemical composition of pyroxene crystals (Fs: 0.90–3.35 mol%) against the data used for the classification of the meteorite. The characteristics of the chondrules, ranging in size from 0.5 to more than 1 mm, allowed concluding that they constitute about 60% of the meteorite’s volume, in which they form many structural and mineral varieties PO, POP, BO, PP and RP chondrules were observed. The remaining 40% of the chondrite volume is a matrix consisting of small crystals of pyroxenes, olivines, glass, as well as opaque minerals: sulphides, FeNi alloy, native copper and gold grains, carbonaceous substance, and compact CAIs. The mineral and chemical composition of CAIs shows that their dominant mineral is melilite, accompanied by diopside and spinel. The chemical composition of spinel and diopside is very similar to their total chemical formulas, while the composition of melilite shows a significant sodium deficiency. Among the opaque minerals, one phase of the FeNi dominates – awaruite (Ni 3 Fe), and sulphides are represented by troilite (FeS) and mackinawite ((Fe,Ni) 9 S 8 ). Moreover, grains of native copper with an admixture of gold and grains of native gold with an admixture of platinum, nickel and copper with a size of several µm were identified. Taking into account the admixtures contained in the above-mentioned opaque minerals (mainly Co and Cu), the parent rock of the carbonaceous chondrite NWA 4446 can be considered to have been mineralized with Fe, Ni, Co and Cu ore minerals with the content of Au and Pt. This means that, we can expect deposits of native forms of the above-mentioned metals and sulphides on the parent bodies of carbonaceous chondrites of the CV group – C-type asteroids.
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来源期刊
Przeglad Geologiczny
Przeglad Geologiczny Earth and Planetary Sciences-Geology
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0.70
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24
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