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Synthesis reaction and compressive strength behavior of loess-fly ash based geopolymers for the development of sustainable green materials

机译:黄土-粉煤灰基地质聚合物的合成反应及抗压强度特性用于开发可持续绿色材料

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This study investigated the potential use of natural loess to activate a geopolymerization reaction, and also to identify the efficient fly ash ratios that is to be combined with loess for the development of a new geopolymer material. A combination of two chemical solutions, sodium hydroxide (NaOH) and sodium silicate (Na2SiO3) as well as a plasticizer were used to investigate the synthesis reaction and the compressive performance on loess-fly ash based geopolymer pastes. A consecutive addition ratio of 10% of L/FA is added within the range of 10-100% was adopted and the specimen's mass loss measurement, relative density variation and compressive strength comparison were performed at different time frames. The test results showed that the presence of high porosity in the geopolymer specimen makes it a light weight material with limited compressive strength and density directly proportional to its strength factor. It was found that the geopolymer pastes derived from 90% loess and 10% fly ash ratios represent the most significant ratio with compressive strength value of up to 14.54 MPa at 7 days curing period. It was also found that when appropriate proportions of loess and fly ash were used, the interaction between the two materials provided the desired short-term and long-term geopolymer properties. This indicated that a very high quantity of loess at a given lowest fly ash proportion gave high strength and provided a greener alternative to Portland cement with maximum economic solution. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究调查了天然黄土在激活地聚反应中的潜在用途,并确定了与黄土结合以开发新的地聚合物材料的有效粉煤灰比。结合使用两种化学溶液,氢氧化钠(NaOH)和硅酸钠(Na2SiO3)以及增塑剂,研究了黄土飞灰基地质聚合物浆料的合成反应和压缩性能。在10-100%的范围内连续添加10%的L / FA,并在不同的时间范围内进行样品的质量损失测量,相对密度变化和抗压强度比较。测试结果表明,地质聚合物样品中存在高孔隙率,这使其成为一种轻质材料,其压缩强度和密度受到限制,而强度与强度系数成正比。发现在90天的养护期中,源自90%的黄土和10%的粉煤灰比例的地质聚合物浆料代表了最显着的比例,其抗压强度值高达14.54 MPa。还发现当使用适当比例的黄土和粉煤灰时,两种材料之间的相互作用提供了所需的短期和长期地质聚合物性能。这表明在给定的最低粉煤灰比例下,大量的黄土具有高强度,并为波特兰水泥提供了更绿色的替代方案,具有最大的经济效益。 (C)2017 Elsevier Ltd.保留所有权利。

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