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Autoclaved aerated concrete incorporating waste aluminum dust as foaming agent

机译:掺有废铝粉作为发泡剂的高压灭菌加气混凝土

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Aluminum dust is a waste from aluminum dross recycling industry. Instead of treating aluminum dust to remove or to immobilize aluminum metal for landfill disposal, a novel approach of utilizing aluminum dust as foaming agent in replacement of costly aluminum powder for the synthesis of autoclaved aerated concrete (AAC) is proposed. Results show that 15.6 g of aluminum dust is able to generate the same amount of gas as 1 g of aluminum powder and both have comparable gas generation rate. Inclusion of aluminum dust causes rapid stiffening of fresh paste while the use of aluminum powder does not change the yield stress development of AACs. As a result, volume expansion and density of Al dust-AAC remains almost unchanged with increasing dosage of aluminum dust. Al dust-AACs; however, possess smaller voids due to higher yield stress of paste. The use of aluminum dust as foaming agent may not achieve a very low density AAC, but it does not compromise the mechanical properties of the resulting Al dust-AACs, which possess a density of around 800 kg/m(3) and a compressive strength of about 2.5 MPa in this study. Aluminum dust thus can be considered as alternative foaming agent for AAC production. (C) 2017 Elsevier Ltd. All rights reserved.
机译:铝粉是来自铝渣回收行业的废物。代替处理铝粉尘以去除或固定铝金属以掩埋垃圾,提出了一种新颖的方法,该方法利用铝粉尘作为发泡剂代替昂贵的铝粉来合成高压釜加气混凝土(AAC)。结果表明,15.6克铝粉尘可以产生与1克铝粉相同数量的气体,并且两种气体的产生率均相当。包含铝粉会导致新鲜糊状物快速硬化,而使用铝粉不会改变AAC的屈服应力发展。结果,随着铝粉剂量的增加,铝粉-AAC的体积膨胀和密度几乎保持不变。铝尘AAC;但是,由于膏的屈服应力较高,所以空隙较小。使用铝粉作为发泡剂可能不会获得非常低的AAC密度,但不会损害所得Al粉AAC的机械性能,后者的密度约为800 kg / m(3),并且具有抗压强度在这项研究中约为2.5 MPa。因此,铝粉可以考虑用作AAC生产的替代发泡剂。 (C)2017 Elsevier Ltd.保留所有权利。

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