Overview of corrosion behaviour of ceramic materials in molten salt environments

A. Ndukwe, Chukwuma Daniel Okolo, Benjamin Uchenna Nwadirichi
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Abstract

This study reviewed previous studies between the years 2015 and 2021 on how ceramic materials degraded in the presence of molten salt environments. The processes of corrosion resistance of various ceramic compositions subjected to various molten salt compositions and temperatures were also scrutinized. The results offer important new insights into the variables affecting ceramics' corrosion behaviour and the production of corrosion products.  The reported result reveals that the ceramic material with the composition (Sm0.5Sc0.5)2Zr2O7 performed better than that of Sm2Zr2O7 in terms of hot corrosion resistance in molten salt (V2O5 + Na2SO4). It has also been reported that corrosion behaviour is influenced by particle size. Notably, zirconia (n-YSZ) with nanoscale grain sizes was more susceptible to hot corrosion, which was explained by increased specific surface areas. On the other hand, sintering and additives have been found to enhance corrosion resistance. The Y-Y2Si2O7 ceramic's resistance to corrosion in (V2O5 + Na2SO4) molten salt was enhanced by the addition of alumina. The results of these investigations help us understand how corrosion works and what influences ceramic materials' susceptibility to deterioration in molten salt media. This information can direct the creation of more corrosive-resistant ceramic materials for use in high-temperature environments or molten salt-based energy systems, among other corrosive uses.
陶瓷材料在熔盐环境中的腐蚀行为概览
本研究回顾了 2015 年至 2021 年期间有关陶瓷材料在熔盐环境中如何降解的以往研究。此外,还仔细研究了各种陶瓷成分在不同熔盐成分和温度下的抗腐蚀过程。研究结果为了解影响陶瓷腐蚀行为和腐蚀产物产生的变量提供了重要的新见解。 报告结果显示,在熔盐(V2O5 + Na2SO4)中,成分为 (Sm0.5Sc0.5)2Zr2O7 的陶瓷材料的耐热腐蚀性能优于 Sm2Zr2O7。另据报道,腐蚀行为受颗粒大小的影响。值得注意的是,具有纳米级晶粒尺寸的氧化锆(n-YSZ)更容易受到热腐蚀的影响,这是因为比表面积增加了。另一方面,烧结和添加剂可增强耐腐蚀性。加入氧化铝后,Y-Y2Si2O7 陶瓷在(V2O5 + Na2SO4)熔盐中的耐腐蚀性增强。这些研究结果有助于我们了解腐蚀是如何发生的,以及是什么影响了陶瓷材料在熔盐介质中的易损性。这些信息可以指导我们制造出更耐腐蚀的陶瓷材料,用于高温环境或基于熔盐的能源系统,以及其他腐蚀性用途。
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
Zastita materijala
Zastita materijala Materials Science-General Materials Science
CiteScore
0.80
自引率
0.00%
发文量
26
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