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首页> 外文期刊>Journal of Microscopy >Apparent versus true density for the volume-to-weight transformation in coal blends.
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Apparent versus true density for the volume-to-weight transformation in coal blends.

机译:掺混物中体积重量比的表观密度与真实密度。

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摘要

This work reviews the procedures involved in the conversion of the petrographic characterization data of blended coals into weight percentages of the single coals in the blends, the selection of the most suitable parameter for describing the density of the coals being critical. First, the fundamentals of the volume-to-weight transformation of the petrographic data were developed by means of mathematical formulae. This part of the procedure highlighted the need to use a density value adapted to the resolving power of the optical microscope. It was found that mercury penetration at 5 MPa, as determined by mercury porosimetry, was best suited for this purpose. A literature survey of published coal density data revealed that the use of correlations between coal density and rank was not an accurate enough procedure to deal with the relatively low corrections involved in the transformation of petrographic data. In the end, three binary blends were prepared from six carefully selected coals and polished particulate blocks of these blends were petrographically analysed to determine their compositions on a volume per cent basis. The best fit of these volume percentages with the weight percentages used in the formulation of the blends was found for a density correction based on mercury penetration at 5 MPa, in agreement with the empirical analysis.
机译:这项工作回顾了将混合煤的岩石特征数据转换为混合煤中单一煤的重量百分比所涉及的程序,选择最合适的参数来描述煤的密度至关重要。首先,借助数学公式开发了岩相数据体积-重量转换的基础。程序的这一部分强调了需要使用适合光学显微镜分辨力的密度值。发现通过汞孔隙率法测定的在5 MPa下的汞渗透最适合于此目的。对已发表的煤密度数据进行的文献调查表明,使用煤密度和等级之间的相关性还不够准确,不足以处理岩石数据转换中涉及的相对较低的校正。最后,从六种精心挑选的煤中制备了三种二元共混物,并对这些共混物的抛光颗粒块进行了岩石学分析,以确定其成分(以体积百分比计)。根据经验分析,发现这些体积百分数与共混物配方中所用的重量百分数最合适,可以根据在5 MPa下的汞渗透进行密度校正。

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