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首页> 外文期刊>Meteoritics & planetary science >Primordial, thermal, and shock features of ordinary chondrites: Emulating bulk X-ray diffraction using in-plane rotation of polished thin sections
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Primordial, thermal, and shock features of ordinary chondrites: Emulating bulk X-ray diffraction using in-plane rotation of polished thin sections

机译:普通的Chondrites的原始,热和冲击特征:使用抛光薄部分的平面旋转模拟散装X射线衍射

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摘要

Using an X-ray diffractometer, powder-like diffraction patterns were acquired from in-plane rotation of polished thin sections (PTSs) of 60 ordinary chondrites (23 H, 21 L, and 16 LL), in order to explore the thermal and shock metamorphism and its modifications of primordial features. The olivine (Ol) 130 peak position shown as Bragg indices clearly correlates with the chemical group for equilibrated ordinary chondrites (EOCs), while the peak is split or broad for unequilibrated ordinary chondrites (UOCs). The intensity ratio of kamacite may be useful for distinguishing the chemical group between H and L-LL, but it is not definite because of heterogeneous terrestrial weathering of kamacite, especially in H chondrites. The summed intensities of the orthoenstatite (Oen) 511 and 421 peaks positively correlates with the metamorphic sequence from 3 to 6, while that of clinoenstatite (Cen) 221 over bar is inversely correlated. The shock stage positively correlates with the summed full width of half maximum values of the Oen 511 and 421 peaks and the FWHM of Ol 130 peak for each class. Significant amount of Oen (Pbca) transformed through Cen (C2/c) finally to Cen (P2(1)/c) is stable at high pressure for shock stage S6 (Tenham and NWA 4719). The shock melted LL chondrite is characterized by the occurrence of Cen and abundant homogeneous olivine. The effects of both thermal and shock metamorphism are thus incorporated into the bulk X-ray diffraction (XRD) data. The bulk XRD method is useful for determining the bulk mineralogy, resulting in the classification of ordinary chondrites. The method is also applicable to samples other than PTS.
机译:使用X射线衍射仪,从60个普通软骨件(23h,21L和16LL)的抛光薄截面(PTS)的面内旋转中获得粉末状衍射图案,以探索热和冲击变质形态及其对原始特征的修改。作为布拉格指数所示的橄榄石(OL)130峰值位置与平衡普通的普通软骨(EoCs)的化学基团明显相关,而峰值分裂或广泛用于不均衡的普通软骨(UOC)。 Kamacite的强度比可用于区分H和L-L1之间的化学基团,但由于Kamacite的异质陆地风化,特别是在H Chondrites中,这并不明确。正牙石(OEN)511和421的总和强度与从3至6的变质序列呈正相关,而Clinoenstatate(CEN)221上的稳定性呈逆转。冲击阶段与OEN 511和421峰值的半最大值的总宽度和每个类别的OL 130峰的FWHM的总宽度呈正相关。通过CEN(C2 / C)转化为CEN(P2(1)/ c)的大量OEN(PBCA)在冲击阶段S6(Tenham和NWA 4719)的高压下稳定。冲击熔化的LL chondrite的特征在于CEN和丰富的均质橄榄石的发生。因此,热和冲击变质的效果被掺入散装X射线衍射(XRD)数据中。散装XRD方法可用于确定散装矿物质,导致普通软骨质的分类。该方法也适用于PTS以外的样品。

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  • 来源
    《Meteoritics & planetary science 》 |2019年第4期| 共19页
  • 作者单位

    Natl Inst Polar Res Antarctic Meteorite Res Ctr 10-3 Midori Cho Tachikawa Tokyo 1908518 Japan;

    Natl Inst Polar Res Antarctic Meteorite Res Ctr 10-3 Midori Cho Tachikawa Tokyo 1908518 Japan;

    Natl Inst Polar Res Antarctic Meteorite Res Ctr 10-3 Midori Cho Tachikawa Tokyo 1908518 Japan;

    Natl Inst Polar Res Antarctic Meteorite Res Ctr 10-3 Midori Cho Tachikawa Tokyo 1908518 Japan;

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  • 正文语种 eng
  • 中图分类 天文学 ;
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