史玉静, 陈涛, 郑金宇, 李星彤, 张倩. 内蒙古黄岗梁含束状包裹体石榴石的矿物学特征研究[J]. 宝石和宝石学杂志(中英文), 2023, 25(3): 7-15. DOI: 10.15964/j.cnki.027jgg.2023.03.002
引用本文: 史玉静, 陈涛, 郑金宇, 李星彤, 张倩. 内蒙古黄岗梁含束状包裹体石榴石的矿物学特征研究[J]. 宝石和宝石学杂志(中英文), 2023, 25(3): 7-15. DOI: 10.15964/j.cnki.027jgg.2023.03.002
SHI Yujing, CHEN Tao, ZHENG Jinyu, LI Xingtong, ZHANG Qian. Mineralogical Characteristic of Garnet Containing Sheaf-like Inclusion from Huanggangliang Deposit, Inner Mongolia[J]. Journal of Gems & Gemmology, 2023, 25(3): 7-15. DOI: 10.15964/j.cnki.027jgg.2023.03.002
Citation: SHI Yujing, CHEN Tao, ZHENG Jinyu, LI Xingtong, ZHANG Qian. Mineralogical Characteristic of Garnet Containing Sheaf-like Inclusion from Huanggangliang Deposit, Inner Mongolia[J]. Journal of Gems & Gemmology, 2023, 25(3): 7-15. DOI: 10.15964/j.cnki.027jgg.2023.03.002

内蒙古黄岗梁含束状包裹体石榴石的矿物学特征研究

Mineralogical Characteristic of Garnet Containing Sheaf-like Inclusion from Huanggangliang Deposit, Inner Mongolia

  • 摘要: 石榴石中常有各种类型的包裹体。本文对产自内蒙黄岗梁地区含有束状包裹体的石榴石样品进行了常规矿物学测试、电子探针、拉曼光谱、红外光谱、紫外-可见光光谱、扫描电子显微镜和X射线能谱等测试分析,以获取该地区此类石榴石及其束状包裹体的矿物学特征。化学成分分析表明该地区此类石榴石为钙铁榴石,含有Mn、Ti、Mg、Cr等杂质元素;拉曼光谱分析显示特征钙铁榴石峰谱;该区此类钙铁榴石呈现深褐色-褐黄色,紫外-可见吸收光谱表明,Fe3+6A1g4A1g 4Eg能级间的电子跃迁产生蓝紫区的438 nm吸收峰,其指示颜色主要由Fe3+导致;该区钙铁榴石的红外光谱中吸收峰与SiO44-振动和Fe3+有关,不同样品中吸收峰的偏移是因其含有少量钙铝榴石和锰铝榴石引起的。石榴石样品的束状包裹体主要为浅褐色,一部分分布于六边形包裹体中,另一部分呈放射状、扇形分布,少数为丝状分布。扫描电子显微镜测试结果表明束状包裹体的横截面大多为近似圆形、矩形或三角形的空管,纵截面为长条状;部分充填有石英和方铅矿;六边形包裹体中存在富Al的环带。

     

    Abstract: There are various types of inclusions in garnet. In this study, garnets containing sheaf-like inclusions from the Huanggangliang deposit, Inner Mongolia, were examined by conventional mineralogical tests, electron microprobe (EPMA), Raman spectrometer, infrared spectrometer (IR), ultraviolet-visible absorption spectrometer, scanning electron microscope (SEM) and X-ray energy spectrometer, to investigate the mineralogical characteristics of these garnet samples and their sheaf-like inclusions. The chemical composition analysis indicated that these garnet samples are andradite, which contain impurity elements including Mn, Ti, Mg and Cr.Raman spectra also indicated that these samples are andradite. Such garnets are dark brown - brown yellow. UV-Vis absorption spectra showed that the electron transition of Fe3+ between the energy levels of 6A1g4A1g 4Eg produces a blue-violet absorption peak at 438 nm, which indicates that the colour is mainly caused by Fe3 +. The absorption peak in the IR spectra is related to the vibration of SiO44- and Fe3+. The shift of absorption peaks in different samples is caused by the small amount of grossularite and spessartite. The sheaf-like inclusions in the samples are mainly light brown, some are distributed in hexagonal inclusions, others are radial and fan-shaped, and a few are filamentous. The results of SEM indicated that cross sections of the sheaf-like inclusions are mostly approximately circular, rectangular or triangular hollow channels and the longitudinal section is long strip; partly filled with quartz and galena. Al-rich zonation is found in hexagonal inclusions.

     

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