首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Natural type-C olivine fabrics in garnet peridotites in North Qaidam UHP collision belt, NW China
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Natural type-C olivine fabrics in garnet peridotites in North Qaidam UHP collision belt, NW China

机译:柴达木北部超高压碰撞带石榴石橄榄岩中的天然C型橄榄石织物

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Water is known to change the lattice-preferred orientation (LPO) of olivine, which significantly affects seismic anisotropy in the Earth's upper mantle. Research into the LPO of olivine in the deep interior of the Earth has been limited due to inadequate specimens. We report both the water-induced LPOs of olivine and the presence of large quantities of water inside olivine, enstatite, and garnet in garnet peridotites from the North Qaidam ultrahigh-pressure (UHP) collision belt in NW China. We show that the [001] axis of olivine is aligned subparallel to the lineation and that the [100] axis is strongly aligned subnormal to the foliation. This alignment is a known feature of type-C LPO of olivine formed experimentally under water-rich conditions (≥ 700 ppm. H/Si) at high pressure and temperature. Enstatite possessed an LPO with the [001] axis aligned parallel to the lineation and the [100] axis aligned normal to the foliation. FTIR analysis of this specimen revealed that olivine contained concentrations of water up to 1130 ± 50. ppm. H/Si in clean areas, whereas olivine, enstatite, and garnet contained considerably more water, i.e., 2600 ± 100. ppm. H/Si, 5000 ± 100. ppm. H/Si, and 21,000 ± 200. ppm. H/Si, respectively, when exsolved inclusions were visible. Confocal micro-Raman spectroscopy of these exsolved inclusions revealed that they were composed of hornblende and amphiboles. Straight dislocations were also commonly observed in olivine and are characteristic of olivine that had been experimentally deformed under hydrous conditions. These observations suggest that the type-C LPO of olivine in the North Qaidam UHP belt formed under water-rich conditions.
机译:众所周知,水会改变橄榄石的晶格优先取向(LPO),这会严重影响地球上地幔的地震各向异性。由于样本不足,对地球深处橄榄石的LPO的研究受到了限制。我们报告了西北缘柴达木超高压(UHP)碰撞带石榴石橄榄岩中橄榄石的水诱导的LPO以及橄榄石,顽辉石和石榴石中大量水的存在。我们显示,橄榄石的[001]轴与该线次平行排列,而橄榄石的[100]轴与该线次垂直强烈排列。这种排列是在高压和高温下在富水条件(≥700 ppm H / Si)下实验形成的橄榄石C型LPO的已知特征。顽辉石拥有一个LPO,其[001]轴平行于该直线对齐,而[100]轴垂直于该叶片对齐。对该样品的FTIR分析表明,橄榄石中的水浓度高达1130±50. ppm。 H / Si处于清洁区域,而橄榄石,顽辉石和石榴石含有更多的水,即2600±100. ppm。 H / Si,5000±100. ppm。 H / Si和21,000±200. ppm。当溶解的夹杂物可见时,分别为H / Si。这些溶解的夹杂物的共焦显微拉曼光谱表明,它们由角闪石和闪石组成。直位错也通常在橄榄石中观察到,并且是在含水条件下实验变形的橄榄石的特征。这些观察结果表明,北柴达木超高压带中的橄榄石C型LPO是在富水条件下形成的。

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