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Sustainable unfired bricks manufacturing from construction and demolition wastes

机译:利用建筑废料和拆除废料进行可持续的免烧砖制造

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摘要

The management of construction and demolition wastes is a huge challenge for most Governments. The greatest component of such wastes is concrete and masonry fragments or remains. Among the most common approaches to valorization of such wastes is to convert them to recycled aggregates, however this may be hampered by low quality of some recycled aggregates compared to natural aggregates. This paper presents the results of experimental investigation where concrete and ceramic remains were used to partially substitute clay soil in producing unfired bricks. The bricks were then tested for mechanical strength, water absorption freeze-thaw resistance. Additionally the environmental impact of the bricks was assessed based on Life Cycle Analysis (LCA). It was established that concrete waste could be used to substitute up to 50% of the clay whereas ceramic wastes could only substitute a maximum of 30% of the clay. Blended bricks made from clay and concrete waste mixes had a lower mechanical strength than those made from clay and ceramic waste. As regards water absorption, there was no marked difference between the two blends of brick however reduction in water resistance was slightly greater in bricks containing concrete waste that in those containing ceramic wastes. Also, tests showed that freeze-thaw resistance was greater in bricks blended with concrete wastes than in those incorporating ceramic wastes. Life Cycle analyses demonstrated that it is the binder content in the mix that largely determines the environmental impact of the blended bricks. Lastly, it was demonstrated that the most desirable technical and environmental credentials of brick material mixes resulted from using the binder combination: CL-90-S+GGBS 2/8. (C) 2018 Elsevier Ltd. All rights reserved.
机译:对大多数政府来说,建筑废料和拆迁废物的管理是一个巨大的挑战。这些废物的最大组成部分是混凝土和砖石碎片或遗骸。将此类废物进行平均化的最常用方法之一是将其转化为可回收的骨料,但是与天然骨料相比,某些可回收的骨料的质量低可能会阻碍这种方法。本文介绍了实验研究的结果,其中使用混凝土和陶瓷残余物部分替代未烧制砖的粘土。然后测试砖的机械强度,吸水抗冻融性。另外,根据生命周期分析(LCA)评估了砖的环境影响。可以确定的是,混凝土废料最多可以替代粘土的50%,而陶瓷废料最多只能替代粘土的30%。由粘土和混凝土废料混合物制成的混合砖的机械强度低于由粘土和陶瓷废料制成的砖。关于吸水率,两种砖的掺混量之间没有显着差异,但是,含有混凝土废料的砖的耐水性下降略大于含有陶瓷废料的砖。此外,测试表明,与混凝土废料混合的砖比掺入陶瓷废料的砖具有更高的抗冻融性。生命周期分析表明,混合物中的粘合剂含量在很大程度上决定了混合砖对环境的影响。最后,事实证明,使用粘合剂组合物CL-90-S + GGBS 2/8是砖混材料的最理想的技术和环境指标。 (C)2018 Elsevier Ltd.保留所有权利。

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