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Short-term compressive strength of fly ash and waste glass alkali-activated cement based binder (AACB) mortars with two biopolymers

机译:具有两种生物聚合物的粉煤灰和废玻璃碱活化水泥基粘合剂(AACB)砂浆的短期抗压强度

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摘要

The Roadmap to a Resource Efficient Europe aims that by 2020, waste will be managed as a resource. Thus materials that have the ability for the reuse of several types of wastes, such as alkali-activated cement-based binders (AACBs), will merit special attention. Some wastes like fly ash deserve special attention because they are generated in high amounts and have a very low reuse rate. This paper reports experimental results regarding the influence of the mix design of fly ash and waste glass AACB mortars containing two different biopolymers (carrageenan and xanthan) on their short-term mechanical performance. Microstructure and cost analysis are also included. The results show that a mixture of 80% fly ash, 10% waste glass, and 10% calcium hydroxide activated with an alkaline activator has the highest compressive strength. The results also show that the mortars with minor biopolymer carrageenan content are associated with a relevant increase in compressive strength and that the use of 0.1% of carrageenan leads to optimum compressive strength in most mixtures. The use of xanthan shows no beneficial effects on the compressive strength of AACB mortars. Several mixtures with xanthan even show a reduction in the compressive strength.
机译:欧洲资源高效路线图的目标是到2020年,将废物作为一种资源进行管理。因此,具有重用多种废物能力的材料,例如碱活化水泥基粘合剂(AACB),将受到特别关注。像粉煤灰这样的一些废物值得特别关注,因为它们产生的量很高,重复利用率很低。本文报道了有关粉煤灰和废玻璃AACB砂浆混合设计的实验结果,该砂浆包含两种不同的生物聚合物(角叉菜胶和黄原胶)对其短期机械性能的影响。微观结构和成本分析也包括在内。结果表明,用碱性活化剂活化的80%粉煤灰,10%废玻璃和10%氢氧化钙的混合物具有最高的抗压强度。结果还表明,生物聚合物角叉菜胶含量较低的砂浆与抗压强度的显着提高有关,使用0.1%角叉菜胶可在大多数混合物中获得最佳抗压强度。黄原胶的使用对AACB砂浆的抗压强度没有显示出有益的影响。与黄原胶的几种混合物甚至显示出抗压强度的降低。

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