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Preliminary Research on the Physical and Mechanical Properties of Alternative Lightweight Aggregates Produced by Alkali-Activation of Waste Powders

机译:废粉碱活化产生的轻质骨料替代物的物理和机械性能的初步研究

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摘要

There is growing interest in construction field issues related to environmental protection, energy saving and raw materials. Therefore, the interest in recycling waste materials to produce new construction ones is constantly increasing. This study proposes a new methodology to produce lightweight aggregates (LWAs) by alkali-activation of two different waste powders: a digested spent bentonite clay and a basalt powder. Metakaolin, as secondary precursor, was added to the mixtures according to mix-design proportions, to improve the mechanical properties of the final materials, while a specific activators mix of Sodium Silicate and Sodium Hydroxide enabled the alkali-activation. The expansion process, on the other hand, was obtained using Peroxide within the liquid mix. The experimental LWAs were analyzed and tested in compliance with the EN 13055-1 standard. A more in-depth analysis on LWAs’ air voids content and porosity was also carried out by the means of Mercury Intrusion Porosimetry and Nuclear Magnetic Resonance. The results were compared with those obtained from commercial Lightweight Expanded Clay Aggregate, which represents one of the most common LWAs in the construction field. According to the presented preliminary results, the use of alkali-activated waste powders seems to be a suitable solution for the production of eco-friendly LWAs by allowing the recycling of waste materials and energy saving for their production.
机译:人们越来越关注与环境保护,节能和原材料相关的建筑领域问题。因此,对回收废料以生产新的建筑材料的兴趣不断增加。这项研究提出了一种通过两种不同废粉的碱活化来生产轻质骨料(LWA)的新方法:一种废弃的膨润土废料和一种玄武岩粉。根据混合物设计的比例,将偏高岭土作为次要前体添加到混合物中,以改善最终材料的机械性能,而硅酸钠和氢氧化钠的特定活化剂混合物则可以进行碱活化。另一方面,在液体混合物中使用过氧化物获得膨胀过程。根据EN 13055-1标准对实验LWA进行了分析和测试。还通过汞侵入孔隙率法和核磁共振法对LWA的气孔含量和孔隙率进行了更深入的分析。将结果与从商业轻质膨胀粘土骨料获得的结果进行比较,后者是建筑领域最常见的LWA之一。根据目前的初步结果,使用碱活化的废粉似乎是允许回收废料并节省生产能源的方法,是生产环保型LWA的合适解决方案。

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