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Synthesis and characterization of fly ash modified mine tailings-based geopolymers

机译:粉煤灰改性矿山尾矿基地质聚合物的合成与表征

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Each year, the mining industry generates a significant amount of mine tailings. Storage of these tailings occupies large areas of land and leads to high monetary, environmental and ecological costs. In this research, a feasibility study is performed on geopolymerization of mine tailings so that they can be recycled and utilized as construction material. Considering the extremely high silicon to aluminum (Si/Al) ratio for the mine tailings, class F fly ash is used to adjust the Si/Al ratio. Sodium hydroxide (NaOH) solution is used as the alkaline reaction agent. The research consists of unconfined compression tests to evaluate the mechanical properties, scanning electron microscopy (SEM) imaging to investigate the microstructure, and the X-ray diffraction (XRD) analysis to study the phase compositions. The effects of fly ash content (which affects the Si/Al ratio), alkalinity (NaOH concentration), and curing time on the geopolymerization of mine tailings are studied in a systematic way. The results show that the Si/Al ratio and the alkalinity have profound effects on the mechanical and micro-structural properties of the mine tailings-based geopolymers. The curing time affects the mechanical and micro-structural properties of the mine tailings-based geopolymers mainly during the first 7 days. Based on the research, it can be concluded that mine tailings are a viable and promising construction material if the geopolymerization technology is utilized. 【Keywords】Mine tailings;Fly ash;Geopolymer;Microstructure;Uniaxial compressive strength;
机译:每年,采矿业都会产生大量的尾矿。这些尾矿的储存占用大片土地,并导致高昂的货币,环境和生态成本。在这项研究中,对矿山尾矿进行地质聚合进行了可行性研究,以便可以将其回收并用作建筑材料。考虑到矿山尾矿的硅铝比(Si / Al)极高,因此使用F级粉煤灰来调整Si / Al比。氢氧化钠(NaOH)溶液用作碱性反应剂。这项研究包括评估机械性能的无限制压缩测试,扫描电子显微镜(SEM)成像以研究微观结构以及X射线衍射(XRD)分析以研究相组成。系统地研究了粉煤灰含量(影响Si / Al比),碱度(NaOH浓度)和固化时间对矿山尾矿地质聚合的影响。结果表明,Si / Al比和碱度对矿山尾矿基地质聚合物的力学和微观结构性质有深远的影响。固化时间主要在前7天影响基于尾矿的地质聚合物的机械和微观结构性能。根据研究,可以得出结论,如果利用地质聚合技术,矿山尾矿是一种可行且有希望的建筑材料。 【关键词】尾矿;粉煤灰;高分子聚合物;微观结构;单轴抗压强度;

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