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Application of Ethylene Oxide Gas and Argon Gas Mixture System Method for Scale Deacidification of Cellulose-Based Cultural Heritage Collections

机译:环氧乙烷气体和氩气混合物系统方法在纤维素的文化遗产收藏率下脱酸化

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Deacidification plays an important role in the conservation of paper-based cultural heritage objects. Herein, a novel approach for the conservation of scale paper-based cultural heritage objects is proposed using a mixture of argon and ethylene oxide (EO-Ar) for the first time. The optimum process conditions for deacidification of ethylene oxide and argon mixture system are determined by orthogonal testing. To evaluate the stabilization effect of paper treated with EO-Ar, the degradation of the mechanical properties (tensile strength, folding endurance and tearing strength tests) of paper after artificial aging was evaluated. The results show that the treated paper had better durability with respect to tensile strength, folding endurance and tearing strength. Additionally, thermal stability, crystallinity and fiber wall thickness increased after EO-Ar treated, which was determined by scanning electron microscope (SEM), diffraction of X-rays (XRD), and thermo gravimetric (TG) analysis. Some compounds, such as polyethylene glycol, organic acids, esters, were detected by GC-MS after treatment with EO-Ar. Two hundred and forty books including acidic, weak acidic and alkaline books were successfully deacidified, resulting in pH values of paper ranges suitable for paper preservation. Finally, a possible mechanism of deacidification of EO-Ar was proposed.
机译:Deacidification在纸质文化遗产对象的保护中起着重要作用。这里,使用氩和环氧乙烷(EO-Ar)的混合物首次提出了一种守旧的纸质文化遗产物体保护的新方法。通过正交检测确定环氧乙烷和氩气混合体系的最佳过程条件。评价用EO-AR处理的纸张的稳定效果,评价人工老化后纸张机械性能(拉伸强度,折叠耐久性和撕裂强度试验)的降解。结果表明,处理过的纸张相对于拉伸强度,折叠耐久性和撕裂强度具有更好的耐久性。另外,通过扫描电子显微镜(SEM),X射线(XRD)的衍射和热重量(TG)分析,在处理后,热稳定性,结晶度和纤维壁厚度增加。在用EO-Ar处理之后,通过GC-MS检测一些化合物,例如聚乙二醇,有机酸,酯类。两百四十本包括酸性,弱酸性和碱性书籍的书籍成功脱酸,导致纸张范围的pH值适用于纸张保存。最后,提出了EO-AR的脱髓化的可能机制。

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