首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >Experimental study on molecular structure differences between the tectonic coal and primary coal in Pingdingshan coalfield
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Experimental study on molecular structure differences between the tectonic coal and primary coal in Pingdingshan coalfield

机译:平顶山煤田构造煤与初级煤的分子结构差异的实验研究

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In order to investigate the microcosmic differences between tectonic coal and primary coal, the fault coal sample D, soft stratified coal sample R and primary coal sample P were obtained from the same geological unit of Pingdingshan coalfield. The microstructures of those three coal samples were tested by adopting the Fourier transform infrared spectroscopy (FT-IR) and Nuclear magnetic resonance spectrum of carbon (C-13-NMR). Results show that: the peaks of FT-IR and C-13-NMR testing curves of those three coal samples are similar, which reveals that coal mainly contains aliphatic groups (e.g. methyl groups), small amount of oxygen-containing functional groups and more aromatics groups. However, the peak fitting of those testing results and the calculation of relevant parameters indicate that, the hydrogen enrichment degree of coal samples D and R are 41.07% and 34.75% higher than that of P coal sample, respectively. Meanwhile, the oxygen-rich degree of those two tectonic coal samples are larger than that of the primary coal. The coal aromaticity D-fa is 0.78, R-fa is 0.80, P-fa is 0.86, thus the aromaticity of tectonic coal is less than that of primary coal. Moreover, according to the calculation results of XBP (the ratio of aromatic bridge carbon to peripheral carbon), it could be concluded that the degree of aromatic structural condensation of tectonic coal is obviously smaller than that of primary coal. Compared with primary coal, the tectonic coals generally have the structural characteristics of retrograde metamorphism on the micro level. This could be a potential microcosmic index for predicting the tectonic regions in coal seam and could provide a microcosmic guidance for controlling gas outburst.
机译:为了研究构造煤和初级煤的微观差异,从平顶山煤田的同一地质单位获得了故障煤样D,软分层煤样r和初级煤样。通过采用傅里叶变换红外光谱(FT-IR)和碳(C-13-NMR)的核磁共振光谱来测试这三种煤样的微观结构。结果表明:这三种煤样的FT-IR和C-13-NMR测试曲线的峰是相似的,煤炭主要含有脂族基团(例如甲基),少量的含氧官能团和更多芳烃群体。然而,这些测试结果的峰值拟合和相关参数的计算表明,煤样品D和R的氢富集程度分别比P煤样的41.07%和34.75%。同时,这两个构造煤样的富氧程度大于初级煤的富煤。煤芳香性D-FA为0.78,R-Fa为0.80,P-Fa为0.86,因此构造煤的芳香性小于初级煤的芳香性。此外,根据XBP的计算结果(芳香桥碳与外周碳的比率),可以得出结论,构造煤的芳族结构凝结程度明显小于初级煤的结构。与初级煤相比,构造煤通常具有逆行变质在微水位上的结构特征。这可能是用于预测煤层中的构造区域的潜在微观指标,并且可以提供用于控制气体突出的微观指导。

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