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Construction and Demolition Waste as Recycled Aggregates in Alkali-Activated Concretes

机译:碱活化混凝土中作为再生骨料的建筑和拆除废物

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摘要

The growth of global construction has contributed to an inevitable increase in the amount of construction and demolition (C&D) waste, and the recycling of C&D waste as aggregates in concrete is receiving increased interest, resulting in less demand for normal aggregates and bringing a potential solution for the landfilling of wastes. Recently, several studies have focused on the use of C&D waste in alkali-activated concrete to move one step closer to sustainable concretes. This paper focuses on the main mechanisms of using C&D waste in the resulting physical, mechanical, and durability properties of alkali-activated concrete in fresh and hardened state properties. The main difficulties observed with recycled aggregates (RA) in concrete, such as high levels of water demand, porous structure, and low mechanical strength, occur in RA alkali-activated concretes. These are associated with the highly porous nature and defects of RA. However, the high calcium concentration of RA affects the binder gel products, accelerates the hardening rate of the concrete, and reduces the flowability of alkali-activated concretes. For this reason, several techniques have been investigated for modifying the water content and workability of the fresh matrix and for treating RA and RA/alkali-activated binder interactions to produce more sustainable alkali-activated concretes.
机译:全球建筑业的增长导致建筑和拆迁(C&D)废物的数量不可避免地增加,而C&D废物作为混凝土骨料的回收利用越来越引起人们的关注,从而导致对普通骨料的需求减少,并带来了潜在的解决方案填埋废物。最近,一些研究集中于在碱活化混凝土中使用C&D废物,以向可持续性混凝土迈进了一步。本文着重介绍了使用C&D废料产生的碱活化混凝土在新鲜和硬化状态下的物理,机械和耐久性能的主要机理。在混凝土中使用再生骨料(RA)观察到的主要困难,例如高需水量,多孔结构和较低的机械强度,都发生在RA碱活化混凝土中。这些与RA的高度多孔性和缺陷有关。但是,高钙的RA会影响粘合剂凝胶产品,加速混凝土的硬化速率,并降低碱活化混凝土的流动性。由于这个原因,已经研究了几种技术,用于改变新鲜基质的水含量和可加工性,以及用于处理RA和RA /碱活化的粘合剂相互作用,从而生产出更具可持续性的碱活化混凝土。

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