Fouling Dynamics of Plates with Coatings Containing Nanoparticles

IF 0.8 4区 材料科学 Q4 MATERIALS SCIENCE, CERAMICS
N. I. Kopytina, N. A. Andreeva, A. A. Mosunov, E. A. Bocharova, O. S. Sizova, O. V. Bakina, M. I. Lerner
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Abstract

Communities of microfouling agents on polymethylacrylate plates (control) coated with antifouling enamel Bioplast-52 and experimental compositions containing ZnO–FeZnO, CuO–FeCuO, ZnTi2O4–ZnO, ZnTi2O4–TiO2, and Ag–TiO2 nanoparticles (NPs) are studied in the coastal water area of Sevastopol (Black Sea) in the period from August 30, 2022 to September 19, 2022. Sampling was carried out on days 3, 13, and 20. A comparative analysis of communities of microfouling formed on the studied coatings is carried out. A total of 72 taxa of organisms of different systematic groups are found on the surfaces: bacteria, fungi (33), and algae (38). The number of taxa on the coatings varied from 34 (Bioplast-52) to 49 (NP ZnTi2O4–TiO2). According to the time of exposure, the number of taxa in the communities varied from 43 (3rd day) to 55 (20th day). The ratio of the final fouling biomass to the biomass formed on the 3rd day of exposure ranged from factors of 1.6 (ZnO–FeZnO NPs) to 24 (Ag–TiO2 NPs). The index of the antifouling efficiency of the coatings (Ief, %) was calculated. The best test result was obtained for a coating consisting of ZnTi2O4–ZnO NPs (Ief = 63.78%). In the early autumn period, in the coastal zone of Sevastopol, compositions with CuO–FeCuO and Ag–TiO2 NPs (efficiency indices of –36.01 and –43.18%) showed themselves to be unpromising.

Abstract Image

含纳米颗粒涂层板的结垢动力学
在2022年8月30日至2022年9月19日期间,在黑海塞瓦斯托波尔沿海水域,研究了涂有防污搪瓷bioplas- 52涂层的聚甲基丙烯酸酯板(对照)和含有ZnO-FeZnO、cuo - feco、ZnTi2O4-ZnO、ZnTi2O4-TiO2和Ag-TiO2纳米颗粒(NPs)的实验组合物(对照)上的微污染剂群落。在第3、13和20天进行抽样。对所研究涂层上形成的微污染群落进行了对比分析。在表面上发现了72个不同系统群的生物分类群:细菌,真菌(33)和藻类(38)。涂层上的分类群数量从34个(Bioplast-52)到49个(NP ZnTi2O4-TiO2)不等。根据暴露时间的不同,群落中分类群数量从43个(第3天)到55个(第20天)不等。最终污染生物量与第3天形成的生物量之比为1.6 (ZnO-FeZnO NPs) ~ 24 (Ag-TiO2 NPs)。计算了涂层的防污效率指数(Ief, %)。ZnTi2O4-ZnO纳米粒子组成的涂层获得了最佳的测试结果(Ief = 63.78%)。在塞瓦斯托波尔沿海地区,初秋阶段,cuo - feco和Ag-TiO2 NPs组成(效率指数分别为-36.01和-43.18%)的前景不佳。
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来源期刊
Glass Physics and Chemistry
Glass Physics and Chemistry 工程技术-材料科学:硅酸盐
CiteScore
1.20
自引率
14.30%
发文量
46
审稿时长
6-12 weeks
期刊介绍: Glass Physics and Chemistry presents results of research on the inorganic and physical chemistry of glass, ceramics, nanoparticles, nanocomposites, and high-temperature oxides and coatings. The journal welcomes manuscripts from all countries in the English or Russian language.
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