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首页> 外文期刊>Journal of Metamorphic Geology >Extending the applicability of the Raman carbonaceous-material geothermometer using data from contact metamorphic rocks
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Extending the applicability of the Raman carbonaceous-material geothermometer using data from contact metamorphic rocks

机译:利用接触变质岩的数据扩展拉曼碳质材料地热仪的适用性

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摘要

The degree of graphitization of carbonaceous material (CM) has been widely used as an indicator of metamorphic grade. Previous work has demonstrated that peak metamorphic temperature (T) of regional metamorphic rocks can be estimated by an area ratio (R2) of peaks recognized in Raman spectra of CM. The applicability of this method to low-pressure (<3 kbar) contact metamorphism was tested using Raman spectroscopic analyses of samples from two contact-metamorphic aureoles in Japan (Daimonji and Kasuga areas). A suitable measurement procedure allows the dependence of the geothermometer on sample type (thin section, chip) and incident angle of laser beam relative to the c-axes of CM to be tested. Two important general results are: (i) in addition to standard thin sections, chips are also suitable for spectral analysis; and (ii) the incident angle of the laser beam does not significantly affect the temperature estimation, i.e. spectral measurements for the geothermometer can be carried out irrespective of the crystallographic orientation. A laser wavelength of 532 nm was used in this study compared with 514.5 nm in an independent previous study. A comparison shows that the use of a 532-nm laser results in a slightly, but systematically larger R2 ratio than that of a 514.5-nm laser. Taking this effect into account, our results show that there is a slight but distinct difference between the R2-T correlations shown by contact and regional metamorphic rocks: the former are slightly better-crystallized (have slightly lower R2 values) than the latter at the same temperature. This difference is interpreted as due to the degree of associated deformation. Despite the slight difference, the results of this study coincide within the estimated errors of ±50 °C with those of the previously proposed Raman CM geothermometer, thus demonstrating the applicability of this method to contact metamorphism. To facilitate more precise temperature estimates in regions of contact metamorphism, a new calibration for analyses using a 532-nm laser is derived. Another important observation is that the R2 ratio of metamorphosed CM in pelitic and psammitic rocks is highly heterogeneous with respect to a single sample. To obtain a reliable temperature estimate, the average R2 value must be determined by using a substantial number of measurements (usually N > 50) that adequately reflects the range of sample heterogeneity. Using this procedure (with 532-nm laser) and adapting our new calibration, the errors of the Raman CM geothermometer for contact metamorphic rocks decrease to ±30 °C.
机译:碳质材料(CM)的石墨化程度已被广泛用作变质等级的指标。先前的工作表明,可以通过在CM的拉曼光谱中识别的峰的面积比(R2)来估计区域变质岩的峰变质温度(T)。使用拉曼光谱分析法分析了来自日本(Daimonji和Kasuga地区)的两个接触变质金针的样品,测试了该方法对低压(<3 kbar)接触变质的适用性。适当的测量程序可以使地热仪依赖于样品类型(薄截面,芯片)以及激光束相对于待测CM的C轴的入射角。两个重要的一般结果是:(i)除标准薄切片外,芯片也适用于光谱分析; (ii)激光束的入射角不会显着影响温度估计,即,地热计的光谱测量可以与晶体学取向无关地进行。这项研究中使用的激光波长为532 nm,而之前的独立研究中使用的激光波长为514.5 nm。比较表明,使用532 nm激光器会导致R2比率比514.5 nm激光器略有但系统上更大。考虑到这种影响,我们的结果表明,接触和区域变质岩所显示的R2-T相关性之间存在细微但明显的差异:前者的结晶度略好于后者(R2值略低)。相同的温度。将该差异解释为归因于相关变形的程度。尽管存在细微的差异,但这项研究的结果与先前提出的拉曼CM地热仪的估计误差相差在±50°C之内,从而证明了该方法可用于接触变质作用。为了便于在接触变质区域内进行更精确的温度估算,得出了使用532 nm激光进行分析的新标定。另一个重要的观察结果是,相对于单个样品,变质体CM在珠光体和叠层岩石中的R2比率高度异质。为了获得可靠的温度估算值,必须使用足够反映样品异质性范围的大量测量值(通常为N> 50)来确定平均R2值。使用此程序(使用532 nm激光)并采用我们的新校准方法,用于接触变质岩的拉曼CM地热仪的误差降低至±30°C。

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