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Investigating Amorphous Composition Mix Design Performance and Properties of Fly Ash-Based Geopolymer

机译:研究粉煤灰基聚合物的非晶态混合料设计性能和性能

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Identifying viable replacement for Ordinary Portland Cement (OPC) is part of the effort to limit CO2 emission during its production. Fly ash-based geopolymer composites have emerged as a sustainable and promising replacement product with proven comparable binding properties, coupled with superior characteristic in some area, when compared to OPC. However, fly ash being a by-product of coal combustion, remains unfavourable in industry application due to its deferring composition dependent on the type of coal feedstock, resulted in inconsistent mechanical and chemical properties produced. In order to overcome this shortcoming, a unified method to evaluate fly ash at the amorphous composition level is required. This study aims to tackle this challenge by establishing a framework to effectively identify relationship among the fly ash amorphous content and identifying an optimum proportion of alkaline activator in order to optimise its full potential in geopolymer concrete or mortar production. This is achieved by utilising XRF and Q-XRD analyses on geopolymer specimen’s amorphous compositions and evaluate their respective compressive strength through laboratory testing. A number of testing variants are carried out including curing regime, alkaline activator concentrations, presence of mechanical activation and deferring water content are investigated.
机译:确定普通波特兰水泥(OPC)的可行替代品是在生产过程中限制CO2排放的努力的一部分。与OPC相比,基于粉煤灰的地聚合物复合材料已经成为一种可持续且有前途的替代产品,具有经证实的可比粘合性能,并且在某些领域具有卓越的特性。然而,粉煤灰是煤燃烧的副产物,由于其延迟成分取决于煤原料的类型,因此在工业应用中仍然不利,导致产生不一致的机械和化学性质。为了克服该缺点,需要一种在无定形成分水平上评价飞灰的统一方法。这项研究旨在通过建立一个框架来有效识别粉煤灰无定形含量之间的关系,并确定最佳比例的碱性活化剂以优化其在地质聚合物混凝土或砂浆生产中的全部潜力,从而应对这一挑战。这是通过对地质聚合物标本的无定形成分进行XRF和Q-XRD分析并通过实验室测试评估其各自的抗压强度来实现的。进行了许多测试变体,包括固化方式,碱性活化剂浓度,机械活化的存在和延迟水含量的研究。

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