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Effects of imidazole ionic liquid on macroparameters and microstructure of bituminous coal during low-temperature oxidation

机译:咪唑离子液体对烟煤低温氧化宏观参数和微观结构的影响

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The effects of ionic liquids (ILs) on the macrostructures and characteristic parameters of coal samples during low-temperature oxidation (30.0-200.0 degrees C) were investigated. The Fourier transform infrared (FTIR) spectroscopy results clearly illustrated that the destruction of functional groups in the coal molecular structure was prominent, and that the benzene rings in the coal molecular structure were barely affected. Therefore, it can be inferred that ILs played a primary role in the destruction of functional groups in the side chain of the coal molecular structure; thus, the aromatic ring was barely affected. Moreover, the inhibition of the functional group at high temperatures by the ILs was also barely effective. The analysis results of the temperature-programmed testing system indicated that the CO concentration and the production rate of CO by coal samples treated with the ILs presented decreasing trends. This result was in sound agreement with the FTIR results for the quantity of carbonyl groups in oxidation stage. The oxygen consumption rate of the sample treated with the ILs gradually decreased beyond the cracking temperature. Moreover, the difference between the thermal release intensity of coal samples treated with the ILs and that of raw coal gradually increased beyond the critical temperature. The inhibiting effect of [Bmim] [BF4] appeared to be greater than that of other ILs, and [Bmim] [I] and [Emim] [BF4] exerted a slight influence on the low-temperature oxidation process of coal samples. Therefore, we conducted a comprehensive comparison of the inhibiting effect of four ILs on bituminous coal during low-temperature oxidation and found that the ILs can be listed in the following order on the basis of their inhibiting effect: [Bmim] [BF4] > [Bmim] [NO3] > [Emim] [BF4] > [Bmim] [I].
机译:研究了离子液体(ILs)对低温氧化(30.0-200.0摄氏度)煤样品的宏观结构和特征参数的影响。傅里叶变换红外光谱(FTIR)光谱结果清楚地表明,煤分子结构中官能团的破坏非常明显,而煤分子结构中的苯环几乎没有受到影响。因此,可以推断出ILs在破坏煤分子结构侧链中的官能团中起主要作用。因此,芳环几乎不受影响。而且,IL在高温下对官能团的抑制也几乎没有效果。温度程序测试系统的分析结果表明,经离子液体处理的煤样品中的二氧化碳浓度和二氧化碳的产生率呈下降趋势。该结果与FTIR结果有关氧化阶段羰基的数量完全吻合。经离子液体处理的样品的耗氧率逐渐降低,超过了裂解温度。此外,经过离子液体处理的煤样品和原煤的热释放强度之间的差异逐渐超过临界温度。 [Bmim] [BF4]的抑制作用似乎比其他离子液体更大,并且[Bmim] [I]和[Emim] [BF4]对煤样品的低温氧化过程影响很小。因此,我们对四种ILs对烟煤在低温氧化过程中的抑制作用进行了全面比较,发现ILs的抑制作用可按以下顺序列出:[Bmim] [BF4]> [ Bmim] [NO3]> [Emim] [BF4]> [Bmim] [I]。

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