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Comprehensive Fractal Description of Porosity of Coal of Different Ranks

机译:不同等级煤孔隙度的分形综合描述

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摘要

We selected, as the objects of our research, lignite from the Beizao Mine, gas coal from the Caiyuan Mine, coking coal from the Xiqu Mine, and anthracite from the Guhanshan Mine. We used the mercury intrusion method and the low-temperature liquid nitrogen adsorption method to analyze the structure and shape of the coal pores and calculated the fractal dimensions of different aperture segments in the coal. The experimental results show that the fractal dimension of the aperture segment of lignite, gas coal, and coking coal with an aperture of greater than or equal to 10 nm, as well as the fractal dimension of the aperture segment of anthracite with an aperture of greater than or equal to 100 nm, can be calculated using the mercury intrusion method; the fractal dimension of the coal pore, with an aperture range between 2.03 nm and 361.14 nm, can be calculated using the liquid nitrogen adsorption method, of which the fractal dimensions bounded by apertures of 10 nm and 100 nm are different. Based on these findings, we defined and calculated the comprehensive fractal dimensions of the coal pores and achieved the unity of fractal dimensions for full apertures of coal pores, thereby facilitating, overall characterization for the heterogeneity of the coal pore structure.
机译:我们选择了北枣矿的褐煤,菜园矿的瓦斯煤,溪渠矿的焦煤和古汉山矿的无烟煤作为研究的对象。我们使用压汞法和低温液氮吸附法分析了煤孔的结构和形状,并计算了煤中不同孔段的分形维数。实验结果表明,孔径大于或等于10 nm的褐煤,气煤和炼焦煤孔径段的分形维数以及孔径大于或等于10mm的无烟煤孔径段的分维数。等于或等于100 nm,可以使用压汞法计算;利用液氮吸附法可以计算出孔径在2.03 nm和361.14 nm之间的煤孔的分形维数,其中以10 nm和100 nm的孔径为界的分形维数不同。基于这些发现,我们定义并计算了煤孔的总分形维数,并实现了煤孔全孔径的分形维数的统一,从而简化了煤孔结构非均质性的总体表征。

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