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Recovery of Degraded-Beyond-Recognition 19th Century Daguerreotypes with Rapid High Dynamic Range Elemental X-ray Fluorescence Imaging of Mercury L Emission

机译:快速动态范围高的元素X射线荧光成像法对汞L排放进行退化识别后的19世纪Daguerreotype的恢复

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摘要

A daguerreotype image, the first commercialized photographic process, is composed of silver-mercury, and often silver-mercury-gold amalgam particles on the surface of a silver-coated copper plate. Specular and diffuse reflectance of light from these image particles produces the range of gray tones that typify these 19th century images. By mapping the mercury distribution with rapid-scanning, synchrotron-based micro-X-ray fluorescence (μ-XRF) imaging, full portraits, which to the naked eye are obscured entirely by extensive corrosion, can be retrieved in a non-invasive, non-contact, and non-destructive manner. This work furthers the chemical understanding regarding the production of these images and suggests that mercury is retained in the image particles despite surface degradation. Most importantly, μ-XRF imaging provides curators with an image recovery method for degraded daguerreotypes, even if the artifact’s condition is beyond traditional conservation treatments.
机译:daguerreotype图像是第一个商业化的照相过程,由银汞组成,并且通常在镀银铜板的表面上由银汞金汞合金颗粒组成。这些图像粒子发出的光的镜面反射和漫反射产生了代表这些19世纪图像的灰度范围。通过使用基于同步加速器的快速扫描微X射线荧光(μ-XRF)成像对汞的分布进行测绘,可以在无创,无创,非接触,非破坏性方式。这项工作进一步促进了有关产生这些图像的化学理解,并表明尽管表面退化,汞仍保留在图像颗粒中。最重要的是,μ-XRF成像为策展人提供了一种针对退化的Daguerreotypes的图像恢复方法,即使该工件的状况超出了传统的保护措施。

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