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首页> 外文期刊>International Journal of Coal Geology >Application of SAXS and SANS in evaluation of porosity, pore size distribution and surface area of coal
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Application of SAXS and SANS in evaluation of porosity, pore size distribution and surface area of coal

机译:SAXS和SANS在评估煤的孔隙度,孔径分布和表面积中的应用

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摘要

This paper discusses the applicability of small angle X-ray scattering (SAXS) and small angle neutron scattering (SANS) techniques for determining the porosity, pore size distribution and internal specific surface area in coals. The method is noninvasive, fast, inexpensive and does not require complex sample preparation. It uses coal grains of about 0.8 mm size mounted in standard pellets as used for petrographic studies. Assuming spherical pore geometry, the scattering data are converted into the pore size distribution in the size range 1 nm (10 A) to 20 nm (200,000 A) in diameter, accounting for both open and closed pores. FTIR as well as SAXS and SANS data for seven samples of oriented whole coals and corresponding pellets with vitrinite reflectance (R_o) values in the range 0.55% to 5.15% are presented and analyzed. Our results demonstrate that pellets adequately represent the average microstructure of coal samples. The scattering data have been used to calculate the maximum surface area available for methane adsorption. Total porosity as percentage of sample volume is calculated and compared with worldwide trends. By demonstrating the applicability of SAXS and SANS techniques to determine the porosity, pore size distribution and surface area in coals, we provide a new and efficient tool, which can be used for any type of coal sample, from a thin slice to a representative sample of a thick seam.
机译:本文讨论了小角度X射线散射(SAXS)和小角度中子散射(SANS)技术在确定煤的孔隙度,孔径分布和内部比表面积方面的适用性。该方法是非侵入性的,快速的,廉价的并且不需要复杂的样品制备。它使用装在标准球团中的约0.8毫米大小的煤炭颗粒,用于岩石学研究。假设球形孔的几何形状,散射数据将转换为直径范围为1 nm(10 A)到20 nm(200,000 A)的孔径分布,同时考虑了开孔和闭孔。给出并分析了7个定向全煤样品和相应的球粒的镜面反射率(R_o)值在0.55%至5.15%之间的FTIR以及SAXS和SANS数据。我们的结果表明,颗粒足以代表煤样品的平均微观结构。散射数据已用于计算可用于甲烷吸附的最大表面积。计算总孔隙率占样品体积的百分比,并将其与全球趋势进行比较。通过展示SAXS和SANS技术确定煤的孔隙率,孔径分布和表面积的适用性,我们提供了一种新型高效的工具,可用于从薄片到代表性样品的任何类型的煤样品厚的接缝。

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