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Recycling of End of Life Concrete Fines into Hardened Cement and Clean Sand

机译:将报废混凝土细粉回收到硬化水泥和干净的沙子中

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One of the massive by-products of concrete to concrete recycling is the crushed concrete fines, that is often 0 - 4mm. Although the construction sector is to some extent familiar with the utilization of the recycled coarse fraction (>4 mm), at present there is no high-quality application for fines due to its moisturized and contaminated nature. Here we present an effective recycling process on lab scale to separate the cementitious powder from the sandy part in the crushed concrete fines and deliver attractive products with the minimum amount of contaminants. For this study, a lab scale Heating-Air classification system was designed and constructed. A combination of heat and air classification, resulted in a proper separation of finer fraction (0 - 0.250 mm), from coarser fractions. Heating of the materials was followed by ball milling to enhance the liberation of the cementitious fraction. Experiments were carried out at different heating temperatures and milling durations. Experimental results show that by heating the materials to 500℃ for 30 seconds, the required time of ball milling is diminished by a factor of three and the quality of the recycling products satisfies well the market demand. In addition, the removal of contaminants is complete at 500℃. The amount of CaO in the recovered finer fraction from the recycling process is comparable with the amount of CaO in low-quality limestone. By using this fraction in the cement kiln as the replacement of limestone, the release of the chemically bound CO2 could be reduced by a factor of three.
机译:从混凝土到混凝土回收的大量副产品之一是粉碎的混凝土细粉,通常为0-4mm。尽管建筑部门在一定程度上熟悉回收的粗颗粒(> 4 mm)的利用,但由于其湿润和受污染的性质,目前没有高质量的罚款申请。在这里,我们提出了一种在实验室规模上有效的回收方法,以将水泥粉与碎混凝土细粉中的沙质部分分离,并以最少的污染物提供有吸引力的产品。对于本研究,设计并构建了实验室规模的加热-空气分类系统。热和空气分类的组合导致较细的部分(0-0.250 mm)与较粗的部分适当分离。在加热材料之后,进行球磨以增强胶凝级分的释放。实验是在不同的加热温度和研磨时间下进行的。实验结果表明,通过将材料加热到500℃30秒,球磨所需的时间减少了三倍,回收产品的质量很好地满足了市场需求。此外,在500℃即可完成污染物的去除。从循环过程中回收的较细级分中的CaO含量与低质量石灰石中的CaO含量相当。通过在水泥窑中使用该馏分代替石灰石,可以将化学结合的二氧化碳释放量减少三倍。

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