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考古出土饱水木材的初步氢核磁共振研究。

Preliminary 1H NMR study on archaeological waterlogged wood.

作者信息

Maccotta Antonella, Fantazzini Paola, Garavaglia Carla, Donato Ines D, Perzia Patrizia, Brai Maria, Morreale Filippa

机构信息

Dipartimento di Chimica, Università di Siena, Via A. Moro, 53100 Siena, Italy.

出版信息

Ann Chim. 2005 Mar-Apr;95(3-4):117-24. doi: 10.1002/adic.200590013.

Abstract

Magnetic Resonance Relaxation (MRR) and Magnetic Resonance Imaging (MRI) are powerful tools to obtain detailed information on the pore space structure that one is unlikely to obtain in other ways. These techniques are particularly suitable for Cultural Heritage materials, because they use water 1H nuclei as a probe. Interaction with water is one of the main causes of deterioration of materials. Porous structure in wood, for example, favours the penetration of water, which can carry polluting substances and promote mould growth. A particular case is waterlogged wood from underwater discoveries and moist sites; in fact, these finds are very fragile because of chemical, physical and biological decay from the long contact with the water. When wood artefacts are brought to the surface and directly dried in air, there is the collapse of the cellular structures, and wood loses its original form and dimensions and cannot be used for study and museum exhibits. In this work we have undertaken the study of some wood finds coming from Ercolano's harbour by MRR and MRI under different conditions, and we have obtained a characterization of pore space in wood and images of the spatial distribution of the confined water in the wood.

摘要

磁共振弛豫(MRR)和磁共振成像(MRI)是获取孔隙空间结构详细信息的强大工具,而这些信息很难通过其他方式获得。这些技术特别适用于文化遗产材料,因为它们使用水的1H核作为探针。与水的相互作用是材料劣化的主要原因之一。例如,木材中的多孔结构有利于水的渗透,水会携带污染物并促进霉菌生长。一个特殊的例子是来自水下发现和潮湿地点的浸水木材;事实上,由于与水长期接触导致的化学、物理和生物腐烂,这些发现物非常脆弱。当木质文物被带到水面并直接在空气中干燥时,细胞结构会坍塌,木材会失去其原始形状和尺寸,无法用于研究和博物馆展览。在这项工作中,我们通过MRR和MRI在不同条件下对一些来自埃尔科拉诺港口的木材发现物进行了研究,并获得了木材孔隙空间的特征以及木材中受限水的空间分布图像。

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