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首页> 外文期刊>Meteoritics & planetary science >Replacement of glass in the Nakhla meteorite by berthierine: Implications for understanding the origins of aluminum-rich phyllosilicates on Mars
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Replacement of glass in the Nakhla meteorite by berthierine: Implications for understanding the origins of aluminum-rich phyllosilicates on Mars

机译:berthierine代替Nakhla陨石中的玻璃:对了解火星上富含铝的层状硅酸盐的起源的含义

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摘要

A scanning and transmission electron microscope study of aluminosilicate glasses within melt inclusions from the Martian meteorite Nakhla shows that they have been replaced by berthierine, an aluminum-iron serpentine mineral. This alteration reaction was mediated by liquid water that gained access to the glasses along fractures within enclosing augite and olivine grains. Water/rock ratios were low, and the aqueous solutions were circumneutral and reducing. They introduced magnesium and iron that were sourced from the dissolution of olivine, and exported alkalis. Berthierine was identified using X-ray microanalysis and electron diffraction. It is restricted in its occurrence to parts of the melt inclusions that were formerly glass, thus showing that under the ambient physico-chemical conditions, the mobility of aluminum and silicon were low. This discovery of serpentine adds to the suite of postmagmatic hydrous silicates in Nakhla that include saponite and opal-A. Such a variety of secondary silicates indicates that during aqueous alteration compositionally distinct microenvironments developed on sub-millimeter length scales. The scarcity of berthierine in Nakhla is consistent with results from orbital remote sensing of the Martian crust showing very low abundances of aluminum-rich phyllosilicates.
机译:扫描和透射电子显微镜对火星陨石纳赫拉熔体包裹体中的铝硅酸盐玻璃的研究表明,它们已被铝铁蛇纹石矿物berthierine代替。这种改变反应是由液态水介导的,液态水沿着封闭的辉石和橄榄石晶粒内的裂缝进入玻璃。水/岩石比低,水溶液为中性且还原性。他们引入了来自橄榄石溶解的镁和铁,并输出了碱。利用X射线微分析和电子衍射鉴定出了紫苏碱。它的出现仅限于以前是玻璃的部分熔融夹杂物,因此表明在环境物理化学条件下,铝和硅的迁移率较低。蛇纹石的发现增加了纳赫拉的后岩浆含水硅酸盐的含量,其中包括皂石和蛋白石-A。如此多种次生硅酸盐表明,在水蚀过程中,亚毫米长度尺度上形成了成分不同的微环境。纳赫拉(Nakhla)的白屈菜碱稀缺与火星地壳的轨道遥感结果相吻合,表明富含铝的层状硅酸盐的丰度非常低。

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