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Low-Carbon Concrete Based on Binary Biomass Ash–Silica Fume Binder to Produce Eco-Friendly Paving Blocks

机译:基于二元生物量灰分粉碎机的低碳混凝土生产环保铺路块

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摘要

The civil construction industry consumes huge amounts of raw materials and energy, especially infrastructure. Thus, the use of eco-friendly materials is indispensable to promote sustainable development. In this context, the present work investigated low-carbon concrete to produce eco-friendly paving blocks. The binder was defined according to two approaches. In the first, a binary binder developed with eucalyptus biomass ash (EBA) and silica fume (SF) was used, in total replacement for Portland cement. In the second, the mixture of residues was used as a precursor in alkali-activation reactions, forming alkali-activated binder. The experimental approach was carried out using five different mixtures, obtained by varying the amount of water or sodium hydroxide solution. The characterization of this new material was carried out using compressive strength, expandability, water absorption, deep abrasion, microstructural investigation, and organic matter degradation potential. The results showed that the EBA-SF system has a performance compatible with Portland cement when used as an alternative binder, in addition to functioning as a precursor to alkali-activated concrete. The blocks produced degraded organic matter, and this degradation is more intense with the incidence of UV. In this way, the EBA-SF binder can be successfully used for the manufacture of ecological paving blocks with low carbon emissions.
机译:民用建筑业消耗了大量的原材料和能源,尤其是基础设施。因此,使用环保材料是必不可少的,以促进可持续发展。在这种情况下,目前的工作调查了低碳混凝土生产环保铺路块。粘合剂根据两种方法定义。首先,使用与桉树生物质灰(EBA)和二氧化硅烟气(SF)开发的二元粘合剂,以总替代到波特兰水泥。在第二种中,将残余物的混合物用作碱活化反应中的前体,形成碱活化粘合剂。使用五种不同的混合物进行实验方法,通过改变水或氢氧化钠溶液的量获得。使用抗压强度,可扩展性,吸水性,深磨损,微观调查和有机物降解潜力进行这种新材料的表征。结果表明,当用作替代粘合剂时,EBA-SF系统具有与替代粘合剂一起用作碱活化混凝土的前体的替代粘合剂时的性能。块产生有机质的降解,并且这种降解与UV的发生率更强烈。以这种方式,EBA-SF粘合剂可以成功地用于制造具有低碳排放的生态铺路块。

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