Measurement of Sorption Isotherms to Guide Mixed Display of Archaeological Iron, Bone, and Glass.

IF 3.1 3区 材料科学 Q3 CHEMISTRY, PHYSICAL
Materials Pub Date : 2024-12-04 DOI:10.3390/ma17235934
David Thickett, Antanas Mėlinis, Bhavesh Shah
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Abstract

This study examines the preservation challenges of archaeological iron, bone, and glass within shared environments focusing on material-specific degradation mechanisms. The relative humidity (RH) requirements for these materials can vary significantly. Iron presents distinct stability groups at specific RH thresholds, albeit levels below 30% RH are recommended for sensitive artefacts. Little is known about the moisture response of bone, and the heterogeneity of the material poses additional challenges for its examination. Glass can undergo deterioration at both high and low RHs due to the threat of aqueous attack and transformation of the pristine glass or the crizzling and delamination of the already transformed glass. Experiments employing dynamic vapour sorption (DVS), acoustic emission (AE), and oxygen depletion analyses provided insights into the moisture response behaviours of these materials. It was found that the deleterious akageneite formation increases dramatically at RHs > 30% in archaeological iron, reinforcing the current guidelines. Bone exhibits significant hygroscopicity as well as isotherm steepening below 25% RH on desorption, suggesting this threshold could be advisable to avoid structural damage. In glass, there is evidence of significant mass fluctuations between c. 60 and 95% RH, as well as isotherm steepening around 30% RH on desorption, thus providing more empirical evidence to published storage recommendations. This work sheds more light on the risk assessment for mixed-material showcases and underscores the necessity of nuanced RH guidelines that consider the material-specific degradation mechanisms.

测量吸附等温线以指导考古铁、骨和玻璃的混合展示。
本研究探讨了在共享环境中保存考古铁器、骨器和玻璃制品所面临的挑战,重点关注特定材料的降解机制。这些材料对相对湿度(RH)的要求差异很大。铁在特定相对湿度阈值下呈现出不同的稳定性组别,尽管建议敏感文物的相对湿度水平应低于 30%。人们对骨的湿度反应知之甚少,而且这种材料的异质性也给检查工作带来了额外的挑战。玻璃在高相对湿度和低相对湿度条件下都会发生老化,这是因为原始玻璃可能受到水的侵蚀和转化,或者已经转化的玻璃可能出现裂纹和分层。通过采用动态蒸汽吸附 (DVS)、声发射 (AE) 和氧耗尽分析进行实验,可以深入了解这些材料的湿度反应行为。研究发现,在相对湿度大于 30% 的考古铁中,有害赤铁矿的形成会急剧增加,从而加强了当前的指导方针。骨在解吸时表现出明显的吸湿性以及低于 25% 相对湿度时等温线的陡峭化,这表明这一阈值对于避免结构损坏是可取的。在玻璃中,有证据表明在约 60% 至 95% 相对湿度之间存在明显的质量波动,以及在解吸时等温线在 30% 相对湿度左右陡峭化,从而为已公布的储存建议提供了更多经验证据。这项研究为混合材料陈列柜的风险评估提供了更多信息,并强调了制定考虑特定材料降解机制的微妙相对湿度指南的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials
Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
5.80
自引率
14.70%
发文量
7753
审稿时长
1.2 months
期刊介绍: Materials (ISSN 1996-1944) is an open access journal of related scientific research and technology development. It publishes reviews, regular research papers (articles) and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Materials provides a forum for publishing papers which advance the in-depth understanding of the relationship between the structure, the properties or the functions of all kinds of materials. Chemical syntheses, chemical structures and mechanical, chemical, electronic, magnetic and optical properties and various applications will be considered.
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