Improvement Of Heat Conductivity Coefficient Of Fly Ash-Based Geopolymer Brick By Substitution Of Blast Furnace Slag

Hussein Jasım Mohammed AL-HASANI, H. Çağlar, Arzu Çağlar
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Abstract

Brick, one of the oldest materials known in history, is a building material that has come up to the present day by continuing its development over time. However, with the development of technology, the brick has been continuously revised. Recently, researchers have turned to the production of geopolymer bricks by substituting waste materials into the brick structure. In this study it is aimed to research the effect of blast furnace slag substitution on the heat conduction coefficient of fly ash-based geopolymer brick. In the study, blast furnace slag was replaced with clay in different proportions (10, 30, 50, and 70%). Furthermore, 20% of the fly ash was kept constant, 8 and 10 M of sodium hydroxide for alkaline activation, and 4% and 8% of calcium hydroxide were used to produce geopolymer bricks. The heat conductivity coefficient determination experiment was applied to the samples. As a result, it was observed that the heat conductivity coefficient decreased with the increase of blast furnace slag, sodium hydroxide, and calcium hydroxide substitution. The best results were obtained from brick samples produced from 70% blast furnace slag, 10 M sodium hydroxide, and 8% calcium hydroxide with 0.26 W/mK. In addition, it has been concluded that geopolymer brick is an effective way to dispose of industrial waste.
用高炉渣替代粉煤灰基地聚合物砖提高导热系数
砖是历史上已知的最古老的材料之一,是一种随着时间的推移而不断发展到今天的建筑材料。然而,随着技术的发展,砖被不断修改。最近,研究人员已经转向生产地聚合物砖,将废料替代到砖结构中。本研究旨在研究高炉炉渣替代对粉煤灰基地聚合物砖导热系数的影响。在研究中,用粘土代替不同比例的炉渣(10%、30%、50%、70%)。粉煤灰用量保持20%不变,氢氧化钠用量为8和10 M进行碱性活化,氢氧化钙用量为4%和8%制备地聚合物砖。对样品进行了导热系数测定实验。结果表明,随着炉渣、氢氧化钠和氢氧化钙取代量的增加,导热系数减小。以70%炉渣、10 M氢氧化钠、8%氢氧化钙(0.26 W/mK)为原料制备砖样效果最佳。此外,还得出了地聚合物砖是一种处理工业废弃物的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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