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首页> 外文期刊>Polymer Degradation and Stability >Effects of temperature and relative humidity on fibrillar collagen in parchment: A micro differential scanning calorimetry (micro DSC) study
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Effects of temperature and relative humidity on fibrillar collagen in parchment: A micro differential scanning calorimetry (micro DSC) study

机译:温度和相对湿度对羊皮纤维胶原蛋白的影响:微差示扫描量热法(micro DSC)研究

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摘要

Micro DSC measurements were used to investigate the synergistic effects of temperature and relative humidity on deterioration of parchment. Samples were obtained by exposing new parchments to various temperature and relative humidity atmospheres for increasing times in controlled test chambers. The impact of this accelerated ageing was assessed by measuring the thermodynamic parameters associated with the thermal denaturation of fibrillar collagen: variation of denaturation temperature, T_(max). indicated changes in collagen thermal stability, increases of DSC peak half-width, △T1/2, revealed greater thermal heterogeneity and structural disorder, whereas parallel decrease of denaturation enthalpy, AH, and DSC peak maximum height, C_p~(ex) max, measured the loss of fibrillar structure. Deconvolution of DSC dena turation peaks provided a valuable illustration of both the dynamics and the pattern of the deterioration of fibrillar collagen. Impact of temperature and relative humidity on parchment integrity and stability is discussed in terms of their implications for conservation science.
机译:微型DSC测量用于研究温度和相对湿度对羊皮纸劣化的协同作用。通过将新的羊皮纸暴露于各种温度和相对湿度的环境中以增加在受控测试室内的时间来获得样品。通过测量与原纤维胶原蛋白热变性相关的热力学参数来评估这种加速老化的影响:变性温度的变化T_(max)。表明胶原热稳定性的变化,DSC峰半峰宽△T1 / 2的增加,显示出更大的热异质性和结构紊乱,而变性焓,AH和DSC峰的最大高度C_p〜(ex)max平行降低,测量纤维状结构的损失。 DSC变性峰的去卷积为纤维状胶原蛋白的动力学和降解模式提供了有价值的例证。根据温度和相对湿度对羊皮纸完整性和稳定性的影响,讨论了它们对保护科学的影响。

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