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Alkaline fused phosphate mine tailings for geopolymer mortar synthesis: Thermal stability, mechanical and microstructural properties

机译:碱性熔融磷酸矿尾矿用于地质砂浆合成:热稳定性,机械和微观结构性能

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摘要

The present study investigates the efficiency of alkaline fusion method to enhance the geopolymeric reactivity of phosphate mine tailings. The effect of sodium hydroxide content and fusion temperature on the mineralogical composition of the fused phosphate sludge was assessed by XRD measurement. The microstructure as well as the mechanical behavior of the prepared geopolymer mortars were investigated using compressive strength test and EDS/SEM analysis. Furthermore, the thermal stability of samples was studied by measuring the mechanical properties after exposure to several cycles of heat treatment at different elevated temperatures (350, 500, 650 and 800 degrees C). The obtained results showed that the structure of phosphate sludge underwent a significant variation after fusion. Alkali thermal treatment led mainly to the decomposition of illite, palygorskite and dolomite, and the formation of Na-rich crystalline phases. NaOH content as well as temperature of fusion has been proved to be essential factors controlling the transformations of the material structure and hence the development of the geopolymer strength. The optimum conditions of fusion were set at 10 wt% of NaOH and a temperature of 550 degrees C, providing geopolymer mortars with high compressive strength (40 MPa).
机译:本研究研究了碱性融合方法的效率,提高了磷酸矿尾矿的地质聚合物反应性。 XRD测量评估了氢氧化钠含量和熔融温度对熔融磷酸盐污泥矿物组成的影响。使用压缩强度试验和EDS / SEM分析研究了微观结构以及制备的地质聚合物砂浆的力学行为。此外,通过在暴露于不同升高的温度(350,500,650和800c)之后测量若干热处理后的机械性能来研究样品的热稳定性。所得结果表明,磷酸盐污泥的结构在融合后经历了显着的变化。碱热处理主要用于伊利石,甲岩和白云岩的分解,以及形成富含Na的晶相。被证明是NaOH含量以及融合温度是控制材料结构转化的基本因素,从而发展地质聚合物强度的发展。融合的最佳条件设定为NaOH的10wt%和550℃的温度,提供具有高抗压强度(40MPa)的地质聚合物砂浆。

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