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Experimental study on the microscopic characteristics affecting methane adsorption on anthracite coal treated with high-voltage electrical pulses

机译:影响用高压电脉冲处理无烟煤煤的微观特性的实验研究

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摘要

The low gas permeability of coal formations with limited coal pores and fractures leads to difficulty in coalbed methane exploration. High-voltage electrical pulse has a potential application in enhanced coalbed methane recovery. In this study, we discuss the microscopic characteristics of anthracite coals treated by high-voltage electrical pulse. We find that C, O, and other coal elements constituting oxygenic groups, which mainly account for gas adsorption, decreased slightly after high-voltage electrical pulse treatment, indicating that elemental variation may have little influence on gas adsorption. The scanning electron microscopy and low-pressure nitrogen gas adsorption (LP-N(2)GA) results show that the cumulative micropore volumes of high-voltage electrical pulse-treated coals were much larger than those of original coals. The mercury intrusion porosimetry results show that the cumulative macropore volumes, which act as gas migration channels in coal increased. Additionally, high-voltage electrical pulse-treated coals were found to have smaller entrapment areas, indicating that gas migration was enhanced.
机译:煤毛孔和骨折有限的煤形成的低气体渗透性导致煤层气勘探难以困难。高压电脉冲具有增强的煤层气回收潜在应用。在这项研究中,我们讨论了高压电脉冲治疗的无烟煤煤的显微特性。我们发现构成含氧基团的C,O和其他煤元素,主要考虑气体吸附,在高压电脉冲处理后略微下降,表明元素变异可能对气体吸附不大。扫描电子显微镜和低压氮气吸附(LP-N(2)Ga)结果表明,高压电脉冲处理煤的累积微孔体积远大于原始煤的累积量。汞侵入孔隙率测定结果表明,累积巨大的巨孔体积,作为煤中的气体迁移通道增加。另外,发现高压电脉冲处理的煤具有更小的截留区域,表明增强了气体迁移。

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