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Porosities of building limestones: using the solid density to assess data quality

机译:建筑石灰石的孔隙度:使用固体密度评估数据质量

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A good knowledge of the volume-fraction porosity is essential in any technical work on porous materials. In construction materials the porosity is commonly measured by the Archimedes buoyancy method, from which the bulk density of the test specimen is also obtained. The porosity and the bulk density together fix the solid density of the specimen, as only two of the three quantities are independent. The solid density, although rarely discussed, is determined by the mineralogy of the specimen, and therefore can provide a valuable check on the accuracy of porosity and bulk density measurements. Our analysis of published data on calcitic limestones shows that the solid density is generally close to the ideal crystallographic density of calcite. Small deviations can often be traced to variations in mineral composition. However some published porosity-density data are inconsistent with the known mineralogy. Deviations which cannot be ascribed to composition may be assumed to arise from measurement errors. We show the value of using the solid density as a quality check on the measured porosity. We recommend that the solid density should always be calculated for this purpose when the Archimedes method is used. This check can be useful also when porosities are measured by helium pycnometry or by mercury intrusion porosimetry.
机译:在多孔材料的任何技术工作中,对体积分数孔隙率的充分了解是必不可少的。在建筑材料中,孔隙率通常通过阿基米德浮力法测量,从中也可得到试样的堆积密度。孔隙率和堆积密度共同固定了样品的固体密度,因为三个量中只有两个是独立的。尽管很少讨论,固体密度是由样品的矿物学确定的,因此可以对孔隙度和堆积密度测量的准确性提供有价值的检查。我们对钙质石灰石公开数据的分析表明,固体密度通常接近方解石的理想晶体学密度。小偏差通常可以追溯到矿物成分的变化。但是,一些公开的孔隙度-密度数据与已知的矿物学不一致。可以归因于测量误差的是不能归因于组成的偏差。我们显示了使用固体密度作为对所测孔隙率的质量检查的价值。我们建议为此目的,在使用阿基米德法时应始终计算固体密度。当通过氦比重瓶法或压汞法测量孔隙度时,该检查也很有用。

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