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Recycled Concrete in Weak Acidic Environments

机译:在弱酸环境中再循环混凝土

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Literature often concludes that the lower mechanical properties of recycled concrete, compared to standard concrete, is unfavourable for the durability in aggressive environments. The agricultural industry is an environment where concrete floor slabs and walls are confronted with weak organic acids. An investigation was set up to determine the resistance of concrete made with coarse recycled concrete aggregates (0-75%), against these acids. In this research two different qualities of recycled aggregates were used: the first originated from road demolition and contained porphyry as main aggregate, the latter originated from mixed demolition and contained mainly limestone. A reference concrete mixture and six different recycled concrete mixtures were made. All seven concretes mixtures were exposed to three different acids: acetic, tartaric and citric acid. Beside the acidic resistance tests, the workability, the fresh and hardened density and the water absorption both by capillarity and submersion, were determined. The results show that the increase of acid soluble material increases the resistance of concrete against erosion due to weak acids.
机译:文献常常认为,与标准混凝土相比,再生混凝土的机械性能较低,对于侵蚀性环境中的耐用性是不利的。农业产业是一种环境,在那里有弱有机酸的混凝土楼板和墙壁。建立了调查以确定用粗循环混凝土聚集体(0-75%)对这些酸制备的混凝土的电阻。在这项研究中,使用了两种不同的再生骨料品质:首先源于道路拆卸并含有斑岩作为主要骨料,后者源于混合拆迁,主要是石灰石。制备参考混凝土混合物和六种不同的再循环混凝土混合物。所有七种混凝土混合物都暴露于三种不同的酸:醋酸,酒石酸和柠檬酸。除了酸性抗性测试之外,确定了通过毛细管性和浸没的可加工性,新鲜和硬化的密度和吸水性。结果表明,由于弱酸,酸可溶材料的增加会增加混凝土抗腐蚀的阻力。

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