Dechlorination of marine iron artifacts using calcined layered double hydroxides

The presence of Cl − is the primary factor responsible for the rapid corrosion of marine iron artifacts, making the efficient dechlorination process a critical challenge for their long-term preservation. We employed calcined Mg/Al layered double hydroxide (LDH) as a dynamic chloride-capturing material to accelerate dechlorination under mildly alkaline conditions. It was shown that calcined MgAl-LDH (LDO) reconstructed through the memory effect and continuously immobilized released Cl − , thereby maintaining a low chloride concentration in the treatment solution and promoting sustained chloride migration from β-FeOOH. Under optimal conditions (pH 9), Cl − was rapidly captured within 24 h via structural reconstruction of LDO, reducing the Cl − content from 4.68% to 1.17% in powdered samples and from 4.93% to 2.86% in simulated β-FeOOH samples. Electrochemical tests showed that after dechlorination, the corrosion current density of the simulated samples was reduced by 67% (from 115.6 μA/cm 2 to 37.44 μA/cm 2 ), and the polarization resistance was increased 2.8 times (from 936 Ω·cm 2 to 3520 Ω·cm 2 ), demonstrating significantly enhanced corrosion resistance. The proposed approach achieves highly efficient dechlorination of marine iron artifacts, providing a promising strategy for their long-term preservation.

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Publication Details

Journal
Journal of Cultural Heritage
Published
2026-09-24
DOI
https://doi.org/10.1016/j.culher.2026.07.020
Primary Topic
Layered Double Hydroxides Synthesis and Applications
Type
article
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Dechlorination of marine iron artifacts using calcined layered double hydroxides

唐波, Pei Hu, Xiaodong Lei, Yiping Wang et al.
Journal of Cultural Heritage
Layered Double Hydroxides Synthesis and Applications
article

Dechlorination of marine iron artifacts using calcined layered double hydroxides

唐波, Pei Hu, Xiaodong Lei, Yiping Wang, An Li, Xiaolin Cheng, Xuhui Zhao, Hao Xu
article en

Abstract

The presence of Cl − is the primary factor responsible for the rapid corrosion of marine iron artifacts, making the efficient dechlorination process a critical challenge for their long-term preservation. We employed calcined Mg/Al layered double hydroxide (LDH) as a dynamic chloride-capturing material to accelerate dechlorination under mildly alkaline conditions. It was shown that calcined MgAl-LDH (LDO) reconstructed through the memory effect and continuously immobilized released Cl − , thereby maintaining a low chloride concentration in the treatment solution and promoting sustained chloride migration from β-FeOOH. Under optimal conditions (pH 9), Cl − was rapidly captured within 24 h via structural reconstruction of LDO, reducing the Cl − content from 4.68% to 1.17% in powdered samples and from 4.93% to 2.86% in simulated β-FeOOH samples. Electrochemical tests showed that after dechlorination, the corrosion current density of the simulated samples was reduced by 67% (from 115.6 μA/cm 2 to 37.44 μA/cm 2 ), and the polarization resistance was increased 2.8 times (from 936 Ω·cm 2 to 3520 Ω·cm 2 ), demonstrating significantly enhanced corrosion resistance. The proposed approach achieves highly efficient dechlorination of marine iron artifacts, providing a promising strategy for their long-term preservation.

Journal of Cultural HeritageVol. 82
National Museum of China (CN), Peking University (CN), State Key Laboratory of Chemical Resource Engineering (CN), Beijing University of Chemical Technology (CN)
Life below water
Openalex Percentile: Top 25%
Layered Double Hydroxides Synthesis and Applications
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Dechlorination of marine iron artifacts using calcined layered double hydroxides — 唐波, Pei Hu, et al. · Journal of Cultural Heritage (2026) | TGRS Research Map | TGRS