钻石中橄榄岩共生矿物包裹体的拉曼光谱表征

A. Kalugina, D. Zedgenizov, A. M. Logvinova
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摘要

研究课题。雅库特钻石产地天然钻石中橄榄岩共生矿物包裹体(橄榄石、正辉石、斜辉石、石榴石)的光谱特征(拉曼光谱)。材料和方法。研究了单矿物包裹体和橄榄岩共生包裹体对一系列金刚石的影响。用电子探针微量分析仪(EPMA)测定了金刚石中矿物包裹体的化学成分。用波长为532 nm的Nd:YAG激光器对夹杂物的拉曼光谱进行了测量。结果。天然钻石中矿物包裹体的光谱特征反映了其化学成分的特定特征。因此,橄榄石光谱中拉曼峰DB1和DB2位置的变化反映了橄榄石-铁铁(Mg-Fe)同构;斜辉石Si-Onbr (ν16)、Si-Obr (ν11)和正辉石(ν17)的拉曼光谱中价态振动模式的位置变化反映了辉石-硬石(CaMg-NaAl)和顽辉石-硅铁石(Mg-Fe)的同构性,石榴石中Si-O键振动能量的变形(ν2)和价态(ν1、ν3)模式的位置变化分别反映了Al-Cr和Ca-Mg的同构性。结论。根据确定的相关性,计算回归线,可用于确定钻石中橄榄岩共生矿物包裹体(斜辉石和石榴石)主要化学成分的定量含量。建立的石榴石和斜辉石包裹体化学成分评价方法可用于区分不同地幔共生体的斜辉石和石榴石包裹体。
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Raman Spectroscopy for Characterization of Peridotite Paragenesis Mineral Inclusions in Diamonds
Research subject. Spectroscopic features (Raman spectra) of mineral inclusions of peridotite paragenesis (olivine, orthopyroxene, clinopyroxene, garnet) in natural diamonds of the Yakutian diamondiferous province. Materials and methods. A series of diamonds was studied both with single mineral inclusions and with associations of inclusions of peridotite paragenesis. The chemical composition of mineral inclusions in diamonds was determined using an electron probe micro-analyzer (EPMA). The Raman spectra of inclusions were obtained on a spectrometer equipped with a Nd:YAG laser with a wavelength of 532 nm. Results. The revealed spectroscopic characteristics of mineral inclusions in natural diamonds reflect specific features of their chemical composition. Thus, the shift in the positions of the Raman peaks DB1 and DB2 in the olivine spectra reflects the forsterite - fayalite (Mg-Fe) isomorphism; changes in the positions of valence vibrational modes in the Raman spectra of clinopyroxene Si-Onbr (ν16) and Si-Obr (ν11) and orthopyroxene (ν17) reflect the isomorphism of diopside - jadeite (CaMg-NaAl) and enstatite - ferrosilite (Mg-Fe), position shifts of deformation (ν2) and valence (ν1, ν3) modes of vibrational energies of the Si-O bond in garnets reflect the Al-Cr and Ca-Mg isomorphism, respectively. Conclusions. For the identified correlations, regression lines were calculated, which can be used to determine the quantitative contents of the main chemical components of mineral inclusions (clinopyroxene and garnet) of peridotite paragenesis in situ in diamonds. The developed method for evaluating the chemical composition of garnet and clinopyroxene inclusions can be used to distinguish clinopyroxene and garnet inclusions from different mantle parageneses.
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