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Natural Pozzolan-based geopolymers for sustainable construction

机译:基于天然火山灰的地聚合物,可实现可持续建筑

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摘要

The study presented herein evaluates effects of alkaline activator (sodium hydroxide) concentration, solution (sodium hydroxide solution)-to-binder ratio (S/B), and curing condition on properties of alkali-activated natural Pozzolan mortars (geopolymers). To this end, several mixtures were made having natural Pozzolan as their binder with different concentrations of alkaline activator solution including 2.5, 5, 7.5, 10, and 12.5 molar (M) at various S/B of 0.50, 0.54, and 0.58. The produced mortars were cured at 80 degrees C under three different conditions of exposed (dry), sealed (wrapped), and moist until testing at ages of 1, 3, and 7 days. Multiple tests were conducted on the alkali-activated natural Pozzolan mortars including flow spread, compressive strength, flexural strength, PH measurement, absorption, and rapid chloride migration. Test results showed the sealed curing condition to be most conducive to strength gain, whereas the exposed curing condition caused dehydration and/or carbonation within the samples and the moist curing condition did not allow for full removal of excess water resulting in reduced bond formations. The moist oven-cured mortars produced higher strength than the exposed cured mortars when alkaline activator with lower molarities was used. The opposite trend was observed for the higher molarities mortars. The compressive and flexural strengths, absorption, and depth of penetrated chloride improved when NaOH concentration increased and S/B decreased.
机译:本文介绍的研究评估了碱性活化剂(氢氧化钠)的浓度,溶液(氢氧化钠溶液)与粘结剂的比率(S / B)和固化条件对碱活化天然火山灰砂浆(地质聚合物)性能的影响。为此,制备了几种具有天然火山灰作为其粘合剂的混合物,其具有不同浓度的碱性活化剂溶液,包括2.5、5、7.5、10和12.5摩尔(M),各种S / B为0.50、0.54和0.58。在三种不同的暴露(干燥),密封(包裹)和潮湿的条件下,将生产的砂浆在80摄氏度下固化,直到在1天,3天和7天的使用期限内进行测试。在碱活化的天然Pozzolan砂浆上进行了多次测试,包括流动分布,抗压强度,抗弯强度,PH测量,吸收和快速的氯离子迁移。测试结果表明,密封固化条件最有利于强度增加,而暴露的固化条件导致样品内的脱水和/或碳酸化,潮湿的固化条件无法完全去除多余的水分,从而减少了键的形成。当使用具有较低摩尔浓度的碱性活化剂时,潮湿的烤箱固化砂浆比暴露的固化砂浆产生更高的强度。对于较高摩尔浓度的砂浆,观察到相反的趋势。当NaOH浓度增加而S / B降低时,抗压强度和弯曲强度,吸收率和穿透的氯化物深度会改善。

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