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Sulfur K-edge micro- and full-field XANES identify marker for preparation method of ultramarine pigment from lapis lazuli in historical paints

机译:硫磺K-Edge微型和全场Xanes识别用于在历史涂料中从Lapis Lazuli的超微颜料制备方法的标志物

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Ultramarine blue pigment, one of the most valued natural artist’s pigments, historically was prepared from lapis lazuli rock following various treatments; however, little is understood about why or how to distinguish such a posteriori on paintings. X-ray absorption near-edge structure spectroscopy at the sulfur K-edge in microbeam and full-field modes (analyzed with nonnegative matrix factorization) is used to monitor the changes in the sulfur species within lazurite following one such historically relevant treatment: heating of lapis lazuli before extracting lazurite. Sulfur signatures in lazurite show dependence on the heat treatment of lapis lazuli from which it is derived. Peaks attributed to contributions from the trisulfur radical—responsible for the blue color of lazurite—increase in relative intensity with heat treatment paralleled by an intensified blue hue. Matching spectra were identified on lazurite particles from five historical paint samples, providing a marker for artists’ pigments that had been extracted from heat-treated lapis lazuli.
机译:紫外线蓝色颜料,是最有价值的自然艺术家的颜料之一,历史上由各种治疗之后的Lapis Lazuli岩石制备;然而,很少被理解为什么为什么或如何区分这样的后言绘画。 Microbeam中的硫k边缘的X射线吸收近边缘结构光谱(用非负面基质分解分析)用于监测Lazurite内硫种类的变化,如历史上相关的治疗:加热在提取爬行车之前的Lapis Lazuli。 Lazurite中的硫符号表明依赖Lapis Lazuli的热处理。峰值归因于三轴自由基的贡献,该贡献负责Lazurite的蓝色 - 增加的相对强度与加强的蓝色色调平行的热处理。在来自五个历史涂料样品的丙酸盐粒子上鉴定匹配光谱,为已从热处理的Lapis Lazuli中提取的艺术家颜料提供标记物。

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