Electrolytic co-deposition of Zn-ZnO and Zn-ZnO-CaCO<sub>3</sub> composite substrates on low-carbon steel

Q4 Engineering
R. N. Nnaji, M. A. Bodude, D. E. Esezobor
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引用次数: 0

Abstract

Conventionally employed zinc-rich paints and coatings for marine corrosion protection of steel still comprise environmentally unfriendly compounds such as zinc phosphate. This paper is focused on developing eco-friendly zinc ternary composite coatings of Zn-ZnO-CaCO3 utilizing CaCO3 additives derived from tympanotonus fuscatus (periwinkle) shell and calcareous eggshell respectively on low-carbon steel using electrodeposition technique. This is aimed at improving not only the surface corrosion resistance of steel structures in marine environment but also the sustainability of raw materials and minimal environmental pollution. Corrosion studies of uncoated and coated steel samples in simulated marine environment were done using linear polarization technique. Results obtained suggested that CaCO3 (i.e., calcareous eggshell) additive in the composite coating significantly improved the corrosion performance of the substrate. Steel coated with calcareous eggshell additive displayed superior corrosion performance having highest polarization resistance, Rp (156090 Ω), lowest corrosion rate, CR (0.01 mm/year) and highest coating efficiency, Ceff (97%) as against those of uncoated, zinc oxide, and tympanotonus fuscatus shell additives after 30 minutes deposition time. Scanning Electron Microscopy (SEM) and Energy Dispersive X-Ray Spectroscopy (EDS) results of selected developed coatings indicated presence of a homogeneous surface morphology and a significant amount of calcium in the calcareous eggshell coating.
Zn-ZnO和Zn-ZnO- caco<sub>3</sub>低碳钢复合基材
传统上用于钢铁海洋防腐的富锌油漆和涂料仍然含有对环境不友好的化合物,如磷酸锌。采用电沉积技术在低碳钢上分别利用从长春花壳和钙质蛋壳中提取的CaCO3添加剂制备了环保型zn - zn -CaCO3复合锌涂层。这不仅是为了提高钢结构在海洋环境中的表面耐腐蚀性,而且是为了提高原材料的可持续性和最小的环境污染。采用线性极化技术对未涂覆和涂覆钢试样在模拟海洋环境中的腐蚀进行了研究。结果表明,CaCO3(即钙质蛋壳)添加剂显著提高了复合涂层的腐蚀性能。与未涂覆、氧化锌和黄斑鼓膜壳添加剂相比,涂覆钙质蛋壳添加剂的钢在30分钟的沉积时间后,具有最高的抗极化能力,Rp (156090 Ω),最低的腐蚀速率,CR (0.01 mm/年)和最高的涂层效率,Ceff(97%)。扫描电镜(SEM)和能量色散x射线能谱(EDS)结果表明,钙质蛋壳涂层具有均匀的表面形貌和大量的钙。
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
Nigerian Journal of Technological Development
Nigerian Journal of Technological Development Engineering-Engineering (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
40
审稿时长
24 weeks
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