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Thermal Conversion Behavior of Medium-Low- Temperature Coal Tar Pitch During Liquid-Phase Carbonization Process

机译:液相碳化过程中中低温煤焦油沥青的热转化行为

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摘要

Medium-low temperature coal tar pitch (MLP) is a type of aromatic carbonaceous material obtained by the low temper- ature distillation of low rank coal, and is considered as a desirable raw material for the production of artificial carbon/ graphite material. The thermal conversion behaviors of MLP during the liquid-phase carbonization process were analyzed in detail in this study. Further, the changes of molecular structure and carbon microcrystalline structure of MLP and liquid-phase carbonization products derived from it were quantitatively investigated by optical microscopy, fourier transform infrared spectroscopy, Raman spectroscopy, X-ray diffraction, and curve-fitting method. Results showed that both branched chain and the contents of C=O functional groups in the MLP played a key role in the reaction reactivity. Moreover, temperature of 450°C was found to be a rapid changing temperature point on the enhancement of thermal conversion of MLP. The stacking height (Lc), parallel layers (N), average number of aromatic rings in each layer (n), ratio of ‘impurity' structure (RI ), ratio of amorphous carbon structure (RAC), ratio of graphite carbon structure (RGC), and ratio of defects graphite carbon structure (RDGC) exhibited a significant change with the improvement of liquid-phase carbonization temperature.
机译:中低温煤炭沥青(MLP)是一种通过低温煤的低温蒸馏而获得的一种芳族碳质材料,被认为是生产人造碳/石墨材料的理想原料。在本研究中,详细分析了MLP在液相碳化过程中的热转化行为。此外,通过光学显微镜,傅立叶变换红外光谱,拉曼光谱,X射线衍射和曲线拟合方法对MLP和液相碳化产物的分子结构和碳微晶结构的变化进行了定量研究。结果表明,MLP中的分支链和C = O官能团的内容在反应反应性中都起着关键作用。此外,发现450°C的温度是MLP热转化的增强的快速变化温度点。堆叠高度(LC),平行层(N),每层(n)中的芳族环的平均数量,“杂质”结构(RI)的比率,无定形碳结构(RAC)的比率(RAC),石墨碳结构的比率( RGC),缺陷比率石墨碳结构(RDGC)随着液相碳化温度的改善而显示出重大变化。

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