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The oxidation state of iron determined by Fe K-edge XANES-application to iron gall ink in historical manuscripts

机译:Fe K-edge XANES测定铁在铁ink油墨中的氧化态

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摘要

Fe K-edge XANES measurements were performed to determine the oxidation state of iron in iron gall inks. These data are used to investigate the relationship between the Fe oxidation state and ink corrosion in historical manuscripts. The oxidation state is determined using the pre-edge based on a general variation trend that was derived from model compounds and validated here independently on a suite of samples with known oxidation state and Fe in octahedral coordination (i. e. similar to Fe in gall ink). As long as suitable references for the pure ferric and ferrous state of iron gall inks cannot be pointed out, the analysis of the pre-edge of the Fe K-edge represents the only way to acquire absolute values for the Fe oxidation state (Fe~(3+)/Fe_(tot)) with spatial resolution for this usually non-crystalline compound. Fe~(3+)/Fe_(tot) values for the ink samples vary between ca. 0.7 and 1.0. Spatially resolved analyses performed across ink strokes of various historical manuscripts as well as newly made samples did not reveal any systematic spatial dependence. On average, historical samples that were exposed to conservation treatments show a more oxidized state. However, the measurements demonstrate explicitly that the exposure to X-rays during the XANES acquisition affects the oxidation state of Fe in most iron gall inks.
机译:进行Fe K-edge XANES测量以确定铁胆油墨中铁的氧化态。这些数据用于研究历史手稿中铁的氧化态与油墨腐蚀之间的关系。使用基于基于模型化合物的一般变化趋势并在此处独立地对一组具有已知氧化态和八面体配位的Fe(即类似于胆汁中的Fe)的样品进行独立验证的前缘来确定氧化态。只要不能指出铁胆油墨的纯铁和亚铁态的合适参考,对Fe K边缘的预边缘的分析就代表了获取Fe氧化态绝对值(Fe〜 (3 +)/ Fe_(tot)),具有通常为非晶态化合物的空间分辨率。墨水样品的Fe〜(3 +)/ Fe_(tot)值在大约2到2 0.7和1.0。对各种历史手稿以及新制作的样本的笔触执行的空间分辨分析均未发现任何系统的空间依赖性。平均而言,经过保存处理的历史样品显示出更高的氧化态。但是,这些测量结果明确表明,在XANES采集过程中暴露于X射线会影响大多数铁胆油墨中Fe的氧化态。

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    《Journal of Analytical Atomic Spectrometry》 |2009年第10期|1364-1372|共9页
  • 作者单位

    Helmholtzzentrum Potsdam Deutsches GeoForschungsZentrum, Telegrafenberg, 14473 Potsdam, Germany;

    Bundesanstalt fuer Materialforschung und pruefung, Unter den Eichen 87, 12205 Berlin, Germany;

    Institut fuer Geowissenschaften, Goethe Universitaet Frankfurt, Altenhoeferallee 1, 60438 Frankfurt am Main, Germany;

    Hamburger Synchrotronstrahlungslabor at Deutsches Elektronensynchrotron, Notkestr. 85, 22603 Hamburg, Germany;

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