硫酸对三元混合地聚合物砂浆抗压强度的影响

E. Ogunbode, S. Musa, A. John, A. Dauda, B. Musa, Y. Garba
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摘要

酸性介质对水泥基建筑的腐蚀作用已成为国内外普遍关注的问题。这些介质通常作为溶液出现在工业的各个部门、酸雨和酸雾以及酸性地下水中。一种非常流行的酸侵蚀混凝土的形式,通常被称为生物硫酸侵蚀,也发生在工业和城市下水道系统中。在过去的几十年里,新型胶凝材料的出现,如地聚合物水泥,需要详细的实验工作和研究活动来调查它们在腐蚀性酸环境中的耐久性。因此,本研究以水玻璃(Na2Si3)和氢氧化钠(NAOH)溶液为碱性活化剂,在侵蚀性和常温养护介质下,探索碱活化CPA-SHA-MK三元共混地聚合物砂浆(GPM)的开发。水玻璃与氢氧化钠的质量比(NS: NH)和粘结剂与细骨料的质量比分别为2.5和0.8。在养护28天、56天和90天后,采用50 mm立方体进行耐酸试验,考察三元混合地聚合物砂浆的耐久性。结果表明,随着RHA-MK替代水平的增加,CPA替代水平的降低,凝固时间延长。结果还表明,所研究的PCM和GPM样品在酸溶液中均遭受质量和强度损失,并且随着水化时间的增加,损失增加。与gpm相比,PCM混合物的强度损失更高(90天时为12.19 N/mm2)(90天时为6.67 N/mm2),而与其他混合物相比,含有50% CPA, 33% MK和17% RHA (C50M33R17)的混合物的耐久性表现更好。因此,研究建议C50M33R17混合比例具有良好的耐久性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Sulphuric Acid on the Compressive Strength of Ternary Blended Geopolymer Mortar
The deteriorating effect of acid media on cement based constructions has become a worrying problem all over the world. These media generally occur as solutions in various branches of the industry, acid rains and mists, and acid ground-waters. A very popular form of acid attack on concrete that is usually referred to as biogenic sulphuric acid attack also occurs in both industrial and urban sewer systems. The emergence of new cementitious materials, like geopolymer cements, during the past decades necessitates detailed experimental work and research activities to investigate their durability in aggressive acid environments. The study therefore explored the development of alkali-activated CPA-SHA-MK ternary blended geopolymer mortar (GPM) using sodium silicate (Na2Si3) and sodium hydroxide (NAOH) solutions with 9M constant concentration as alkaline activators under both the aggressive and ambient-temperature curing media. The mass ratio of sodium silicate to sodium hydroxide (NS: NH) and as well as the binder to fine aggregate were fixed at 2.5 and 0.8 respectively. The durability of the ternary blended geopolymer mortar was examined through acid resistance test using 50 mm cubes after 28, 56 and 90 days of curing. The results revealed that the setting time prolonged as the replacement levels of RHA-MK increased at a decrease in the replacement levels of CPA. The results also showed that both the PCM and GPM samples studied suffered mass and strength losses in the acid solution and the loss increases at an increase in the hydration periods. The strength losses were observed to be higher in PCM mix (12.19 N/mm2 at 90 days) as compared to the GPMs (6.67 N/mm2 at 90 days) while the mix incorporated 50% CPA, 33% MK and 17% RHA (C50M33R17) was observed to be better compared to other mixes in durability behaviour. The study therefore recommends C50M33R17 mix proportion for good durability performance. 
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