Nano Calcium-Aluminum Layered Double Hydroxides for the Conservation of Earthen Immovable Cultural Heritage
Jie Zhou, Pingchuan Gao, Weiwei Cao, Ting Zhao, Yuan Fang, Yi Qin, Wenzong Yang, Zhuo Wang, Jianfeng Zhu, Yi Liu

TL;DR
Nano calcium-aluminum layered double hydroxides help protect ancient earthen artworks by reducing salt damage and strengthening surfaces.
Contribution
Nano Ca-Al LDHs are introduced as a novel material for regulating salt crystallization and consolidating earthen cultural relics.
Findings
Coating with Ca-Al LDHs delayed salt-induced damage by 150%.
Surface hardness increased by 3.1%, and weight loss decreased by 38.3% after treatment.
LDHs partially transform into calcium carbonate, enhancing surface bonding strength.
Abstract
Earthen immovable cultural relics, such as murals and painted clay sculptures, are prone to deterioration (e.g., efflorescence, flaking, and cracking) under long-term preservation conditions. While conventional restoration materials primarily offer reinforcement, they fail to regulate the migration of soluble salts within the relics, which is the main cause of such damage. Herein, aimed at protecting the painted sculptures and murals of the Yungang Grottoes, nano calcium-aluminum layered double hydroxides (Ca-Al LDHs) were prepared, and their effectiveness in regulating salt crystallization within the earthen ground layer, as well as their reinforcement performance were investigated. Simulated salt crystallization tests revealed that coating the ground layer with Ca-Al LDHs delayed salt-induced damage time by 150%. This can be attributed to the ability of Ca-Al LDHs to adsorb sulfate…
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Taxonomy
TopicsLayered Double Hydroxides Synthesis and Applications · Building materials and conservation · Magnesium Oxide Properties and Applications
