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基于膨润土的水凝胶用于砂岩文化遗产保护的研究:原位形成、增强机制及高耐久性评估

Insight into a Bentonite-Based Hydrogel for the Conservation of Sandstone-Based Cultural Heritage: In Situ Formation, Reinforcement Mechanism, and High-Durability Evaluation.

作者信息

Shi Chengyu, Zhao Chunyu, Chen Yinghao, Wu Youshen, Zhang Junjie, Chang Gang, He Ling, Pan Aizhao

机构信息

School of Chemistry, Xi'an Jiaotong University, Xianning West Road, 28, Xi'an710049, China.

Instrumental Analysis Center of Xi'an Jiaotong University, Xi'an Jiaotong University, Xianning West Road, 28, Xi'an710049, China.

出版信息

ACS Appl Mater Interfaces. 2022 Nov 23;14(46):52459-52466. doi: 10.1021/acsami.2c13122. Epub 2022 Nov 8.

DOI:10.1021/acsami.2c13122
PMID:36346342
Abstract

Conservation of sandstone-based cultural heritage has attracted a great deal of interest. We propose herein a novel protecting strategy, via in situ fabrication of bentonite-based hydrogels (B-H) inside sandstones, where the bentonite-based hydrogels serve as the underlying cement. To create bentonite-based hydrogels with controllable structure, possessing good mechanical and anti-swelling properties, we have optimized forming time, appearance, and viscosity. The hydrogel precursor penetrated into the pores of the sandstone; the hydrogel would then form within 3-5 h. As found by employing a fluorescent tracer, the precursor remained controllably in place without any apparent change in the sandstone morphology. The bentonite-based hydrogels that formed inside the sandstones presented strong hydrogen bonding, coordination, and ionic bonding, as well as strong mechanical interlocking to the sandstone matrix. As a result, the sandstones possessed enhanced mechanical compressive strength and excellent resistance to acid, salt, and freeze-thaw cycles. Our approach provides for a non-destructive, eco-friendly, easy-to-use, and long-term strategy for cultural preservation, one with excellent protection effects.

摘要

砂岩类文化遗产的保护引起了广泛关注。在此,我们提出一种新颖的保护策略,即通过在砂岩内部原位制备膨润土基水凝胶(B-H),其中膨润土基水凝胶作为底层粘结剂。为了制备具有可控结构、良好机械性能和抗膨胀性能的膨润土基水凝胶,我们对形成时间、外观和粘度进行了优化。水凝胶前体渗透到砂岩孔隙中;水凝胶随后会在3-5小时内形成。通过使用荧光示踪剂发现,前体可控地保留在原位,砂岩形态没有明显变化。在砂岩内部形成的膨润土基水凝胶呈现出强大的氢键、配位键和离子键,以及与砂岩基质的强大机械互锁。结果,砂岩具有更高的机械抗压强度以及优异的耐酸、耐盐和抗冻融循环性能。我们的方法为文化遗产保护提供了一种无损、环保、易用且长期的策略,具有出色的保护效果。

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