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首页> 外文期刊>Journal of Cleaner Production >Compressive strength and microstructure analysis of geopolymer paste using waste glass powder and fly ash
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Compressive strength and microstructure analysis of geopolymer paste using waste glass powder and fly ash

机译:废玻璃粉和粉煤灰对地质聚合物浆体的抗压强度和微观结构分析

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The use of recycled materials in concrete is attractive for reducing the waste and consumption of natural material resources. Geopolymer is an inorganic binder material that has emerged as an alternative to conventional cement binders for the concrete industry. In this study, the compressive strengths and microstructures of geopolymer pastes containing waste glass powder and high-calcium fly ash were investigated. High-calcium fly ash with median particle size of 21.26 mu m was replaced by waste glass powder at the levels of 10%, 20%, 30%, and 40% by weight to produce the geopolymer pastes. The waste glass powders consisted of ground fluorescent lamp glass and ground container glass with median particle sizes of 4.65 and 11.72 mu m, respectively. Sodium hydroxide and sodium silicate were used as activated solutions. The alkaline liquid to binder ratio was 0.6 and that of sodium silicate to sodium hydroxide was 1.0. All samples were cured at 60 +/- 2 degrees C for 48 h and held at 23 +/- 2 degrees C until testing. The results indicated that waste glass powder could be used to replace fly ash to produce geopolymer pastes with 7-d compressive strengths of 34-48 MPa. The dense microstructure, characterized by scanning electron microscopy and mercury intrusion porosimetry, was closely related to the improved compressive strength; the use of 10-20% ground container glass to replace high-calcium FA yielded the optimum results. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在混凝土中使用再生材料对于减少自然材料资源的浪费和消耗具有吸引力。地质聚合物是一种无机粘合剂材料,已替代混凝土行业中常规水泥粘合剂。在这项研究中,研究了含有废玻璃粉和高钙粉煤灰的地聚合物糊的抗压强度和微观结构。用废玻璃粉代替中值粒径为21.26μm的高钙粉煤灰,其含量为10%,20%,30%和40%(重量),以生产地质聚合物浆料。废玻璃粉由中性荧光灯玻璃和中空容器玻璃组成,中值粒径分别为4.65和11.72μm。氢氧化钠和硅酸钠用作活化溶液。碱性液体与粘合剂的比率为0.6,而硅酸钠与氢氧化钠的比率为1.0。所有样品在60 +/- 2摄氏度下固化48小时,并保持在23 +/- 2摄氏度下进行测试。结果表明,废玻璃粉可用于代替粉煤灰,以生产7-d抗压强度为34-48 MPa的地质聚合物浆料。以扫描电子显微镜和压汞法为特征的致密微观结构与抗压强度的提高密切相关。使用10%至20%的容器碎玻璃代替高钙FA可获得最佳结果。 (C)2017 Elsevier Ltd.保留所有权利。

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