Waste Glass Dust to Reduce Alkali Silica Reaction

Amanda Bordelon, Raja Nikesh Reddy Cholleti
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引用次数: 1

Abstract

Millions of tons of generated glass are wasted each year and being added to landfills in which glass takes one million years to decompose. Since the wasted glass contains a significant amount of silica, a main component in other supplementary cementitious materials (SCMs), this research focuses on whether waste glass powder can be used to reduce alkali-silica reaction (ASR). The glass powders were created from either a dust collection or by additional crushing, with possible blending of an existing SCM fly ash. In addition, compressive strengths of mortar mixtures with each glass powder or combined with fly ash at varying replacements of cement were also monitored. Other common SCMs were compared to the glass powders and fly ash for ASR mortar performance. The glass dust was more effective at reducing ASR than the crushed glass. With moderately reactive aggregates, all combinations of glass or fly ash at 40 percent replacement of cement were found to be acceptable for ASR resistance. However, all glass powders were also found to reduce strength of the mortar.
废玻璃粉尘减少碱-硅反应
每年产生的数百万吨玻璃被浪费,并被添加到垃圾填埋场,而这些玻璃需要100万年才能分解。由于废玻璃中含有大量的二氧化硅,而二氧化硅是其他补充胶凝材料(SCMs)的主要成分,因此本研究的重点是废玻璃粉末是否可以用于还原碱-二氧化硅反应(ASR)。玻璃粉末是通过收集灰尘或通过额外的粉碎而产生的,可能与现有的SCM飞灰混合。此外,还监测了每种玻璃粉混合砂浆或与粉煤灰混合砂浆在不同水泥替代品下的抗压强度。将其他常见的SCMs与玻璃粉和粉煤灰进行了ASR砂浆性能的比较。玻璃粉尘比碎玻璃更有效地减少ASR。对于反应性中等的骨料,玻璃或粉煤灰在40%的水泥替代量下的所有组合都被发现是可接受的抗ASR。然而,所有的玻璃粉也会降低砂浆的强度。
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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