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Moisture sorption as a potential condition marker for historic silks: noninvasive determination by near-infrared spectroscopy

机译:水分吸附作为历史丝绸的潜在条件标记:近红外光谱无创测定

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摘要

Given their ephemeral nature, the preservation of historic silks can be problematic. Rapid, on-site condition monitoring would offer significant benefits to conservators and museum curators concerned with continued access to collections. In this paper, near-infrared spectroscopy (NIR) is investigated as noninvasive approach to the characterization of silk fabrics and particularly for determining the moisture content of silks as potential age-related marker. Bands within the NIR spectrum of silk are assigned to contributions from water and the silk fibroin polymer. The water bands may be deconvolved to show separate contributions from bound and structural water. When silk is exposed to deuterium oxide, the water OH NIR bands are rapidly lost. The accompanying changes in the amide-related NIR absorptions reflect differential accessibility of regions within the semi-crystalline fibroin aggregate. NIR spectra were recorded while silk was maintained at range of relative humidity; complementary gravimetry provided absolute reference data for moisture sorption. Asingle spectral parameter, the intensity of the water combination band, is sufficient to indicate the relative moisture content of silk and allows distinction of unaged and heat, light, and humidity aged silks. The results confirm that NIR has significant potential for on-site studies at collections in support of the preservation and access of our silk heritage.
机译:鉴于其短暂的性质,历史丝绸的保存可能会出现问题。快速的现场状况监测将为与持续获取藏品有关的保育人员和博物馆策展人带来重大利益。在本文中,近红外光谱(NIR)作为一种非侵入性的方法来研究丝绸织物的特性,特别是用于确定丝绸的水分含量作为潜在的与年龄相关的标记物,因此被研究。丝绸的近红外光谱内的谱带归属于水和丝绸素蛋白聚合物的贡献。可以对水带进行反卷积以显示来自约束水和结构水的不同贡献。当丝绸暴露于氧化氘时,水OH NIR谱带迅速消失。酰胺相关的NIR吸收的伴随变化反映了半结晶纤维蛋白聚集体内不同区域的可及性。当丝绸保持在相对湿度范围时,记录近红外光谱。互补重量分析法提供了水分吸收的绝对参考数据。单一光谱参数,即水结合带的强度,足以指示丝绸的相对水分含量,并可以区分未老化的和经热,光和湿度老化的丝绸。结果证实,NIR在藏品的现场研究中具有巨大的潜力,可以支持我们的丝绸遗产的保存和使​​用。

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  • 作者

    Zhang, Xiaomei; Wyeth, Paul;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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