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Response of concrete with blended binders and nanoparticles to sulfuric acid attack

机译:掺有粘结剂和纳米颗粒的混凝土对硫酸侵蚀的响应

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Concrete has long been the most popular material for the construction of key infrastructural elements such as sewerage pipes, water treatment facilities, industrial floors and foundations, which can be chemically vulnerable to damage by sulfuric acid attack. Since high alkalinity is required for stability of the cementitious matrix, concrete is susceptible to attack by acidic media, which may disintegrate the hydrated cement paste to various levels based on the prevailing exposure conditions and key mixture design parameters of concrete. This study investigated the response, in terms of physico-mechanical and microstructural features, of concrete comprising different types of cement (general-use or Portland limestone cement (PLC)) with various combinations of supplementary cementitious materials (fly ash, silica fume and nanosilica) to severe sulfuric acid exposure (immersion of test specimens in 5% sulfuric acid solution with a maximum pH threshold of 2.0 for 90 d). The results revealed that the surface degradation (mass loss) of concrete under severe sulfuric acid attack was independent of its penetrability (physical resistance), since very dense cementitious matrices (low penetrability) suffered severe deterioration. PLC may slightly improve the resistance of concrete to sulfuric acid attack whereas, among the blended binders tested, binary binders comprising 30% fly ash particularly improved the resistance of concrete to sulfuric acid attack due to an inert filler effect of fly ash particles at the exposed surface.
机译:长期以来,混凝土一直是建造关键基础设施(例如污水管,水处理设施,工业地板和地基)的最流行材料,这些化学成分易受硫酸侵蚀的破坏。由于水泥基质的稳定性需要高碱度,因此混凝土容易受到酸性介质的侵蚀,而酸性介质可能会根据主要的暴露条件和混凝土的关键混合料设计参数将水合水泥浆崩解成各种水平。这项研究从物理力学和微观结构特征的角度研究了包含不同类型水泥(通用水泥或波特兰石灰石水泥(PLC))以及各种辅助胶凝材料(粉煤灰,硅粉和纳米二氧化硅)的混凝土的响应)暴露于严重的硫酸中(将试样浸入5%的硫酸溶液中,最大pH阈值为2.0,持续90 d)。结果表明,由于非常稠密的水泥基体(低渗透性)遭受了严重的破坏,因此在严重的硫酸侵蚀下混凝土的表面降解(质量损失)与它的渗透性(物理阻力)无关。 PLC可能会稍微提高混凝土的抗硫酸侵蚀性,而在测试的混合粘结剂中,包含30%粉煤灰的二元粘结剂由于粉煤灰颗粒在外露处的惰性填料作用而特别提高了混凝土的抗硫酸侵蚀性表面。

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