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Solid-state and unilateral NMR study of deterioration of a Dead Sea Scroll fragment

机译:固态和单边NMR研究死海涡旋碎片的退化

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Unilateral and solid-state nuclear magnetic resonance (NMR) analyses were performed on a parchment fragment of the Dead Sea Scroll (DSS). The analyzed sample belongs to the collection of non-inscribed and nontreated fragments of known archaeological provenance from the John Rylands University Library in Manchester. Therefore, it can be considered as original DSS material free from any contamination related to the post-discovery period. Considering the paramount significance of the DSS, noninvasive approaches and portable in situ nondestructive methods are of fundamental importance for the determination of composition, structure, and chemical–physical properties of the materials under study. NMR studies reveal low amounts of water content associated with very short proton relaxation times, T 1, indicating a high level of deterioration of collagen molecules within scroll fragments. In addition, 13C cross-polarization magic-angle-spinning (CPMAS) NMR spectroscopy shows characteristic peaks of lipids whose presence we attribute to the production technology that did not involve liming. Extraction with chloroform led to the reduction of both lipid and protein signals in the 13C CPMAS spectrum indicating probable involvement of lipids in parchment degradation processes. NMR absorption and relaxation measurements provide nondestructive, discriminative, and sensitive tools for studying the deterioration effects on the organization and properties of water and collagen within ancient manuscripts.
机译:对死海古卷(DSS)的羊皮纸碎片进行了单边和固态核磁共振(NMR)分析。分析的样品属于曼彻斯特约翰·赖兰兹大学图书馆未刻印和未经处理的已知考古来源碎片的集合。因此,可以认为它是原始DSS材料,没有任何与发现后期间有关的污染。考虑到DSS的最重要意义,非侵入性方法和便携式原位非破坏性方法对于确定所研究材料的组成,结构和化学-物理性质至关重要。 NMR研究表明,少量的水含量与非常短的质子弛豫时间T 1 有关,表明涡旋片段中胶原分子的高度降解。此外, 13 C交叉极化魔角旋转(CPMAS)NMR光谱显示了脂质的特征峰,我们将其存在归因于不涉及石灰的生产技术。氯仿提取导致 13 C CPMAS光谱中脂质和蛋白质信号的减少,表明脂质可能参与了羊皮纸的降解过程。 NMR吸收和弛豫测量提供了无损,判别和敏感工具,用于研究对古代手稿中水和胶原蛋白的组织和特性的恶化影响。

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