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OH defects in cassiterite

机译:锡石中的OH缺陷

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Two infrared (IR) spectral types are discerned in cassiterites with OH defect concentrations ranging from several wt. ppm H_2O in synthetic melt-grown samples up to 0.017 wt. percent in natural samples of hydrothermal origin. Spectrum type I is characterised by one sharp band centred at 3255 cm~(-1), type II spectra reveal an additional band group centred around 3340cm~(-1), which is clearly correlated with the presence of Ti. Both OH band groups are strongly polarised with maximum absorption perpendicular to the c-axis. Type I spectra prevail in nearly colourless samples, type II spectra typically occur in light to dark brown cassiterites, bearing essentially higher amounts of minor elements, especially Ti, Nb, Ta, W, Zr, and Fe. The total amount of water is not significantly correlated with the minor element content. It is concluded that different OH concentrations reflect different water activities prevalent during the formation of cassiterite crystals in different geological environments.
机译:在锡石中可辨别出两种红外(IR)光谱类型,其OH缺陷浓度范围为数wt%。合成熔体生长样品中的ppm H_2O高达0.017 wt。天然热液样品中的百分比。 I型谱的特征是一个以3255 cm〜(-1)为中心的尖峰带,II型谱则显示了以3340cm〜(-1)为中心的另一个谱带组,这显然与Ti的存在有关。两个OH带基团均被强烈极化,垂直于c轴的吸收最大。 I型光谱普遍存在于几乎无色的样品中,II型光谱通常发生在浅色至深棕色锡石中,并带有大量的微量元素,尤其是Ti,Nb,Ta,W,Zr和Fe。水的总量与微量元素含量没有显着相关。结论是,在不同的地质环境中,不同的OH浓度反映了锡石晶体形成过程中普遍存在的不同水活度。

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