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Influence of initial water, moisture, and geopolymer content on geopolymer modified sludge

机译:初始水,水分和地质聚合物含量对地质聚合物改性污泥的影响

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摘要

In recent years, the development of sustainable construction materials has been the attention of several research efforts. Among those, Portland cement is the one which is of extreme importance due to its high level of carbon dioxide emissions associated with its manufacturing process. In this study, the influence of initial curing time and water content was investigated in an attempt to utilize geopolymer for modifying soft soil (sludge) in the actual landslide area caused mainly by the earthquake or heavy rainfall. Two methods for making specimen applied in this research are sludge conditioning and sludge dewatering methods in consideration of failure strength, failure strain and bulk density of modified sludge using fly ash-based geopolymer at ambient temperature. Test results indicate that the initial curing time has the potential for improving failure strain and strength of modified sludge with the specific condition of soft soil. The result further shows that the initial water content over than 50% total mass of sludge could significantly lead to the decrease of strength performance of geopolymer-based modified sludge. The optimum moisture content of geopolymer modified sludge has strong influence on the amount of geopolymer content and initial water content of the sludge. (C) 2019 Elsevier Ltd. All rights reserved
机译:近年来,可持续建筑材料的开发一直是数项研究工作的关注点。其中,由于波特兰水泥与其制造过程相关的二氧化碳排放量很高,因此极为重要。在这项研究中,研究了初始固化时间和含水量的影响,试图利用地质聚合物对实际由地震或暴雨引起的滑坡地区的软土(淤泥)进行改性。考虑到粉煤灰基地聚合物在环境温度下的破坏强度,破坏应变和堆积密度,污泥处理和污泥脱水方法是本研究应用的两种标本制作方法。试验结果表明,在特定的软土条件下,初始固化时间有可能改善改性污泥的破坏应变和强度。结果进一步表明,初始含水量超过污泥总质量的50%会明显导致基于地质聚合物的改性污泥的强度性能下降。地质聚合物改性污泥的最佳水分含量对污泥的地质聚合物含量和初始含水量有很大影响。 (C)2019 Elsevier Ltd.保留所有权利

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