生物岩-辉绿岩(Mg# = 30~99)的近红外光谱研究:OH 拉伸模式和 Mg# 含量预测方程

Crystals Pub Date : 2024-03-31 DOI:10.3390/cryst14040336
Zhentao Yang, Mingyue He, Shaokun Wu, Mei Yang, Bijie Peng
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摘要

透辉石-透辉石矿物是一种完整的镁铁同构系列透辉石。傅立叶变换红外光谱(FTIR)和电子微探针分析(EMPA)对端元辉绿岩、镁橄榄石和黝帘石样品进行了研究。在中红外区域,生物岩组在 460、1000、3680 和 3710 cm-1 处观察到吸收峰。镁含量较高的样品表现出较强的羟基振动峰和 810 cm-1 处的微弱吸收峰。在近红外区域,在 4200、4300 和 4450 cm-1 附近观察到组合峰,其波长与 Mg# [=100 × Mg/(Mg + FeT)] 值呈线性反比关系。对于黝帘石,组合峰出现在 4173、4292 和 4439 cm-1 处,与末端成员辉绿岩相比减少了 10-15 cm-1。判断组合带的基峰有助于确定适合定量研究的近红外特征峰。生物橄榄石-辉绿岩中的 4300 cm-1 吸收峰被认为是羟基弯曲和伸展振动,因此适合所有生物橄榄石组的矿物鉴定和 Mg# 估算。4450 cm-1 特征峰归属于 Al-O 拉伸振动和 OH 拉伸振动,适用于准确预测高 AlVI 样品中的 Mg# 值。斜长石的第一个泛音出现在 7250 cm-1 处,基音和相应泛音之间的平均系数为 1.955。本研究旨在完善植硅体矿物近红外光谱区的羟基伸展振动模式和特征峰移,为行星光谱学和矿床研究提供数据参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Near-Infrared Spectroscopic Study of Biotite–Phlogopite (Mg# = 30~99): OH-Stretching Modes and Mg# Content Prediction Equation
Biotite–phlogopite minerals are a complete Mg–Fe isomorphism series of phyllosilicates. A Fourier transform infrared spectroscopy (FTIR) and electron microprobe analysis (EMPA) were conducted on end-member phlogopite, Mg–biotite, and annite samples. In the mid-infrared region, absorption peaks were observed at 460, 1000, 3680, and 3710 cm⁻1 in the biotite group. Samples with higher Mg content exhibited stronger peaks assigned to OH vibrations and a weak absorption peak at 810 cm⁻1. In the near-infrared region, combination peaks were observed near 4200, 4300, and 4450 cm⁻1, with wavenumbers showing a linear inverse relationship with the Mg# [=100 × Mg/(Mg + FeT)] value. For annite, combination peaks occurred at 4173, 4292, and 4439 cm⁻1, decreasing by 10–15 cm⁻1 compared to end-member phlogopite. Judging the fundamental peaks of the combination band contributes to identifying suitable near-infrared characteristic peaks for quantitative research. The 4300 cm−1 absorption peak in biotite–phlogopite was assigned to OH-bending and -stretching vibrations, making it suitable for mineral identification and Mg# estimations across all biotite groups. The 4450 cm-1 characteristic peak, assigned to Al–O-stretching vibrations and OH-stretching vibrations, is suitable for accurately predicting Mg# values in high AlVI samples. The first overtones of biotite–phlogopite appeared at 7250 cm⁻1, with an average factor of 1.955 between the fundamental and corresponding overtones. This study aims to refine the patterns of OH-stretching vibrations and characteristic peak shifts in the near-infrared spectral region of phyllosilicate minerals, providing data references for planetary spectroscopy and ore deposit studies.
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