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Production of geopolymeric binder from blended waste concrete powder and fly ash

机译:由混合废混凝土粉和粉煤灰生产地聚合物粘合剂

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Recycling and utilization of waste concrete is a significant contribution to environment and sustainable development. In current practice, the recycling of waste concrete is mainly limited to the use of crushed aggregates in low-specification applications. Few researchers have investigated complete recycling of waste concrete. These complete recycling methods, however, need to re-clinker the hydrated cement using the standard cement kiln procedures and thus consume significant amount of energy and release large quantity of CO_2. To completely recycle and utilize waste concrete in a sustainable and environmentally-friendly way, a method that does not need re-clinkering at high temperature should be used. This paper studies the production of geopolymeric binder from ground waste concrete (GWC) powder mixed with class F fly ash (FA), which can then be used with recycled concrete aggregates to produce new concrete. Specifically, the effect of composition and concentration of the alkaline solution and the content of GWC on the unconfined compressive strength (UCS) of the produced geopolymeric binder is investigated. SEM/EDX, XRD, and FTIR analyses are also performed to investigate the microano-structure, morphology and phase/surface elemental compositions of the produced geopolymeric binder and the effect of calcium (Ca) on them. The results indicate that utilization of GWC together with FA can increase the UCS of the geopolymeric binder up to 50% GWC content. Further increase of GWC decreases the UCS of the geopolymeric binder. So with proper combination of GWC and FA, the geopolymeric binder with required strength can be produced.
机译:废混凝土的回收利用是对环境和可持续发展的重要贡献。在当前实践中,废弃混凝土的回收主要限于在低规格应用中使用碎石料。很少有研究者对废弃混凝土的完全回收进行调查。但是,这些完整的回收方法需要使用标准水泥窑程序重新熟化水合水泥,从而消耗大量能量并释放大量CO_2。为了以可持续和环保的方式完全回收利用废弃的混凝土,应使用一种无​​需在高温下重新熟化的方法。本文研究了由掺有F级粉煤灰(FA)的地废混凝土(GWC)粉生产地聚合物粘合剂的方法,然后可将其与再生混凝土骨料一起用于生产新混凝土。具体地,研究了碱性溶液的组成和浓度以及GWC的含量对所生产的地质聚合物粘合剂的无侧限抗压强度(UCS)的影响。还进行了SEM / EDX,XRD和FTIR分析,以研究所生产的地质聚合物粘合剂的微观/纳米结构,形态和相/表面元素组成,以及钙(Ca)对其的影响。结果表明,将GWC与FA一起使用可将地聚合物粘合剂的UCS提高至GWC含量的50%。 GWC的进一步增加会降低地聚合物粘合剂的UCS。因此,通过适当地结合使用GWC和FA,可以生产出具有所需强度的地聚合物粘合剂。

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