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Performance of one-part alkali activated recycled ceramic tile/fine soil binders

机译:一部分碱活性再生陶瓷瓷砖/细土粘合剂的性能

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Performance of Sustainable materials continues through using of recycled waste construction materials to minimize the utilization of the natural resources. The cement industry is a major source of CO2 in the atmosphere which is the main cause of global warming. Replacement of OPC with other sustainable cementitious materials has been the most interesting area of researches. This investigation focuses on the properties of alkali-activated mortar with the different replacement ratios of ceramic tile powder (CTP) by fine soil powder (FSP) (0 to 100)% and different molarities of sodium hydroxide concentrations. The experimental program was conducted by examining the compressive strength, water absorption, and water sorptivity. The results showed that the compressive strength of the specimens at age of (28, 56, and 90 days) increases with an increase in the amount of fine soil powder content and decreases at the age of 120 days. Also, minimum water absorption at the age of 90 days was found in the mixes containing 100% fine soil powder. However, fine soil powder replacement had a negative effect on the sorptivity and water absorption values at the age of 120 days. On the other hand, the 12M sodium hydroxide concentration was considered the optimum concentration compared to other concentrations.
机译:可持续材料的性能继续使用再生废物建筑材料,以最大限度地减少自然资源的利用率。水泥行业是大气中二氧化碳的主要来源,这是全球变暖的主要原因。用其他可持续水泥材料更换OPC是最有趣的研究领域。本研究侧重于通过细土粉(FSP)(0至100)%和氢氧化钠浓度不同的陶瓷瓷砖粉末(CTP)的不同替代比的碱活性砂浆的性质。通过检查抗压强度,吸水和水吸附性来进行实验程序。结果表明,在(28,56和90天)的年龄的试样的抗压强度随着细土粉含量的增加而增加,120天内减少。此外,在含有100%细土粉末的混合物中发现了90天的最小吸水性。然而,细土粉末替代物对120天的吸附率和吸水值的负面影响。另一方面,与其他浓度相比,12M氢氧化钠浓度被认为是最佳浓度。

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