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首页> 外文期刊>Scientific reports. >Synchrotron radiation Ca K-edge 2D-XANES spectroscopy for studying the stratigraphic distribution of calcium-based consolidants applied in limestones
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Synchrotron radiation Ca K-edge 2D-XANES spectroscopy for studying the stratigraphic distribution of calcium-based consolidants applied in limestones

机译:同步辐射CA K-EDGE 2D-XANES光谱研究石灰岩中钙的氧化剂的地层分布

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In Heritage Science, the evaluation of stone consolidation treatments by investigating the nature of in situ newly formed products and their penetration depth within the consolidated matrix is a grand challenge. A number of analytical methods have been proposed, but, currently, most of them are not able to supply a full overview of the spatial, structural and compositional information of the newly formed crystalline and amorphous phases with a submicrometric lateral resolution. Here, we examined, the capabilities of synchrotron radiation (SR)-based two-dimensional X-ray absorption near-edge structure (2D-XANES) spectroscopy at Ca K-edge for determining the structural and compositional properties of the compounds formed after the application of a calcium acetoacetate-based consolidant on a porous carbonatic stone (limestone) and for investigating their stratigraphic distribution at the submicrometric scale length. We evaluated advantages and drawbacks of three Ca K-edge 2D-XANES-based approaches: (i) transmission mode full-field-XANES (FF-XANES) imaging; (ii) micro-X-ray fluorescence (μ-XRF) mapping above the Ca K-edge combined with the acquisition of XRF mode μ-XANES spectra at a limited number of spots; (iii) full-spectral μ-XANES (FS μ-XANES) mapping in XRF mode and its variant called selectively induced X-ray emission spectroscopy (SIXES) mapping. Overall, Ca K-edge 2D-XANES spectroscopy provided accurate qualitative and semi-quantitative information on the newly formed calcium carbonates (i.e., amorphous calcium carbonate, vaterite and calcite) and their stratigraphic distribution at the submicrometric scale, thus opening a new scenario to study the carbonatation process of calcium-based consolidants in limestones.
机译:在遗产科学中,通过调查原位新成型产品的性质及其在综合基质内的渗透深度来评估石头固结治疗是一个大挑战。已经提出了许多分析方法,但目前,其中大多数不能提供新形成的结晶和无定形相的空间,结构和组成信息的完整概述,其具有亚微米的横向分辨率。在这里,我们检查了同步辐射(SR)的能力,基于CA K边缘的二维X射线吸收近边缘结构(2D- XANES)光谱,以确定后形成的化合物的结构和组成特性乙酰乙酸钙的粘结剂在多孔碳石(石灰石)上的应用及其在潜在尺度长度下研究其地层分布。我们评估了三个CA K-Edge 2D-XANES的方法的优点和缺点:(i)传输模式全场Xanes(FF-XANES)成像; (ii)在Ca K边缘上方的微X射线荧光(μ-XRF)映射结合在有限数量的斑点下采集XRF模式μ-X X谱比; (iii)XRF模式中的全光谱μ-X X(FSμ-Xanes)映射及其变体称为选择性地诱导的X射线发射光谱(SIXES)映射。总体而言,CA K-EDGE 2D-XANES光谱提供了关于新形成的碳酸钙(即无定形碳酸钙,Vaterite和方解石)的准确的定性和半定量信息,以及它们在潜在尺度上的地层分布,从而开启了新的场景研究石灰石中钙的巩固剂的碳酸化过程。

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