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Anticorrosion Behavior of the SiO2/Epoxy Nanocomposite-Concrete Lining System under H2SO4 Acid Aqueous Environment

机译:H2SO4酸含水环境下SiO2 /环氧纳米复合材料 - 混凝土衬里系统的防腐行为

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Concrete structures in the sewer are corroded by sulfuric acid solution resulted from the actions of microorganisms in a sewer environment. Many reports pointed out that it can shorten the service life of concrete sewer networks from 10 to 50 years. Isolation of sulfuric acid solution from the surface of the sewerage concrete structures by using a polymer lining is effective corrosion protection. This study presents the preparation of a silica–epoxy nanocomposite material used for this lining purpose. Diffusion behavior, the cohesion of the lining on the concrete surface under the severer conditions, was investigated. Dispersion and distribution of the nanoparticles in the epoxy matrix confirmed by scanning electron microscopy (SEM) and X-ray diffraction analysis contribute to the enhancement of the lining’s barrier properties to water and to H_(2)SO_(4) acid solution at different temperatures. An improvement of cohesion between the concrete and the nanocomposite lining was found. The nanocomposite lining remained cohesive on a concrete substrate almost two times longer than the neat lining when they were exposed to the 10.0 wt % H_(2)SO_(4) acid solution at both 40 and 60 °C. The energy-dispersive system combined SEM analysis results of the pulled-off linings confirmed that the corrosion of the concrete interfaces is because of H_(2)SO_(4) acid. It contributes to the adhesion loss of the lining. Thus, loaded nanosilica particles into epoxy enhance barrier properties, bond strength, and longevity of the service life of the sewerage concrete structure.
机译:下水道中的混凝土结构被硫酸溶液腐蚀,从下水道环境中的微生物作用产生。许多报告指出,它可以从10到50年内缩短混凝土下水道网络的使用寿命。通过使用聚合物衬里将硫酸溶液从污水混凝土结构表面分离是有效的腐蚀保护。本研究介绍了用于这种衬里目的的二氧化硅 - 环氧纳米复合材料的制备。调查了扩散行为,研究了严重条件下混凝土表面上的衬里的内聚力。通过扫描电子显微镜(SEM)和X射线衍射分析证实的环氧基质中纳米颗粒的分散和分布有助于提高衬里的屏障性质与水中的屏障性和不同温度下的H_(2)SO_(4)酸溶液。发现了混凝土与纳米复合衬片之间的内聚力的改善。当在40℃和60℃下暴露于10.0wt%H_(2)酸溶液时,纳米复合衬底几乎比整个衬里的混凝土基底粘合两倍。能量分散系统组合的衬垫衬里的SEM分析结果证实了混凝土界面的腐蚀是因为H_(2)SO_(4)酸。它有助于衬里的粘附损失。因此,将纳米硅颗粒加载到环氧树脂中,增强污水混凝土结构的使用寿命的屏障性,粘合强度和寿命。

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  • 来源
    《ACS Omega》 |2020年第18期|共10页
  • 作者

    Chau Van Dinh;

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