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Semi-quantitative analysis of the formation of a calcium oxalate protective layer for monumental limestone using combined micro-XRF and micro-XRPD

机译:结合使用微型XRF和微型XRPD进行纪念碑式石灰石草酸钙保护层形成的半定量分析

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A current method for the protection of cretaceous limestone present in various monuments consists of performing a passivating treatment with ammonium oxalate (AmOx). A calcium oxalate protective layer is formed on the surface and enhances the acid resistance of the stone. The in-depth formation of the calcium oxalate layer was investigated on cross sections by using combined micro X-ray fluorescence and micro X-ray powder diffraction (μXRF/μXRPD). XRPD showed the presence of both whewellite and weddellite in the calcite stone matrix. A correction was made for sample misalignment, which was visible in both the fluorescence and the diffraction line measurements. A semi-quantitative analysis was performed on the basis of Klug's equation for a two-phase mixture (the presence of weddellite was neglected) without the need for a known reference sample. By assuming two extreme compositions for a reference weight fraction (1 and 99wt%), it was possible to obtain whewellite concentration profiles, which can be used for comparing the effectiveness of different methods for the application of AmOx to the stone surface and the effect of treatment time and AmOx concentration used. It is shown that for the relative amounts of whewellite formed, the differences due to the assumed weight fractions are smaller than the errors due to sample heterogeneity and preferred orientation.
机译:保护各种古迹中存在的白垩纪石灰石的当前方法包括用草酸铵(AmOx)进行钝化处理。草酸钙保护层形成在表面上,并增强了石材的耐酸性。通过结合使用微型X射线荧光和微型X射线粉末衍射(μXRF/μXRPD)在横截面上研究草酸钙层的深度形成。 XRPD显示方解石基质中同时存在辉绿岩和绿辉石。对样品未对准进行了校正,这在荧光和衍射线测量中均可见。在不需要已知参考样品的情况下,根据Klug方程对两相混合物(忽略了辉绿岩的存在)进行了半定量分析。通过假设两种极端成分的参考重量分数(分别为1和99wt%),可以获得辉绿石浓度曲线,该曲线可以用于比较将AmOx应用于石材表面的不同方法的效果以及处理时间和使用的AmOx浓度。结果表明,对于形成的辉石的相对量,由于假定的重量分数而引起的差异小于由于样品的不均匀性和优选取向而引起的误差。

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