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Corrosion Resistance of CeO(2)-GO/Epoxy Nanocomposite Coating in Simulated Seawater and Concrete Pore Solutions

Reinforced concrete structures in the marine environment face serious corrosion risks. Coating protection and adding corrosion inhibitors are the most economical and effective methods. In this study, a nano-composite anti-corrosion filler with a mass ratio of CeO(2):GO = 4:1 was prepared by hydrothe...

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Autores principales: Liu, Xiaoyan, Wu, Zitao, Lyu, Yaoyao, Li, Tianyu, Yang, Heng, Liu, Yanqi, Liu, Ruidan, Xie, Xian, Lyu, Kai, Shah, Surendra P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10302103/
https://www.ncbi.nlm.nih.gov/pubmed/37376248
http://dx.doi.org/10.3390/polym15122602
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author Liu, Xiaoyan
Wu, Zitao
Lyu, Yaoyao
Li, Tianyu
Yang, Heng
Liu, Yanqi
Liu, Ruidan
Xie, Xian
Lyu, Kai
Shah, Surendra P.
author_facet Liu, Xiaoyan
Wu, Zitao
Lyu, Yaoyao
Li, Tianyu
Yang, Heng
Liu, Yanqi
Liu, Ruidan
Xie, Xian
Lyu, Kai
Shah, Surendra P.
author_sort Liu, Xiaoyan
collection PubMed
description Reinforced concrete structures in the marine environment face serious corrosion risks. Coating protection and adding corrosion inhibitors are the most economical and effective methods. In this study, a nano-composite anti-corrosion filler with a mass ratio of CeO(2):GO = 4:1 was prepared by hydrothermally growing cerium oxide on the surface of graphene oxide. The filler was mixed with pure epoxy resin at a mass fraction of 0.5% to prepare a nano-composite epoxy coating. The basic properties of the prepared coating were evaluated from the aspects of surface hardness, adhesion grade, and anti-corrosion performance on Q235 low carbon steel subjected to simulated seawater and simulated concrete pore solutions. Results showed that after 90 days of service, the corrosion current density of the nanocomposite coating mixed with corrosion inhibitor was the lowest (I(corr) = 1.001 × 10(−9) A/cm(2)), and the protection efficiency was up to 99.92%. This study provides a theoretical foundation for solving the corrosion problem of Q235 low carbon steel in the marine environment.
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spelling pubmed-103021032023-06-29 Corrosion Resistance of CeO(2)-GO/Epoxy Nanocomposite Coating in Simulated Seawater and Concrete Pore Solutions Liu, Xiaoyan Wu, Zitao Lyu, Yaoyao Li, Tianyu Yang, Heng Liu, Yanqi Liu, Ruidan Xie, Xian Lyu, Kai Shah, Surendra P. Polymers (Basel) Article Reinforced concrete structures in the marine environment face serious corrosion risks. Coating protection and adding corrosion inhibitors are the most economical and effective methods. In this study, a nano-composite anti-corrosion filler with a mass ratio of CeO(2):GO = 4:1 was prepared by hydrothermally growing cerium oxide on the surface of graphene oxide. The filler was mixed with pure epoxy resin at a mass fraction of 0.5% to prepare a nano-composite epoxy coating. The basic properties of the prepared coating were evaluated from the aspects of surface hardness, adhesion grade, and anti-corrosion performance on Q235 low carbon steel subjected to simulated seawater and simulated concrete pore solutions. Results showed that after 90 days of service, the corrosion current density of the nanocomposite coating mixed with corrosion inhibitor was the lowest (I(corr) = 1.001 × 10(−9) A/cm(2)), and the protection efficiency was up to 99.92%. This study provides a theoretical foundation for solving the corrosion problem of Q235 low carbon steel in the marine environment. MDPI 2023-06-07 /pmc/articles/PMC10302103/ /pubmed/37376248 http://dx.doi.org/10.3390/polym15122602 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Xiaoyan
Wu, Zitao
Lyu, Yaoyao
Li, Tianyu
Yang, Heng
Liu, Yanqi
Liu, Ruidan
Xie, Xian
Lyu, Kai
Shah, Surendra P.
Corrosion Resistance of CeO(2)-GO/Epoxy Nanocomposite Coating in Simulated Seawater and Concrete Pore Solutions
title Corrosion Resistance of CeO(2)-GO/Epoxy Nanocomposite Coating in Simulated Seawater and Concrete Pore Solutions
title_full Corrosion Resistance of CeO(2)-GO/Epoxy Nanocomposite Coating in Simulated Seawater and Concrete Pore Solutions
title_fullStr Corrosion Resistance of CeO(2)-GO/Epoxy Nanocomposite Coating in Simulated Seawater and Concrete Pore Solutions
title_full_unstemmed Corrosion Resistance of CeO(2)-GO/Epoxy Nanocomposite Coating in Simulated Seawater and Concrete Pore Solutions
title_short Corrosion Resistance of CeO(2)-GO/Epoxy Nanocomposite Coating in Simulated Seawater and Concrete Pore Solutions
title_sort corrosion resistance of ceo(2)-go/epoxy nanocomposite coating in simulated seawater and concrete pore solutions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10302103/
https://www.ncbi.nlm.nih.gov/pubmed/37376248
http://dx.doi.org/10.3390/polym15122602
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