Hongxin Liu, Jian Wang, Lijia Wang, Zhihui Yao, Zijun Li
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引用次数: 0
摘要
处理废玻璃最常见的方法是填埋或焚烧,这会造成资源浪费。为了实现废玻璃的高值化处理,本文研究了用玻璃粉(GP)部分替代水泥制备超高性能混凝土(UHPC)的方法。实验结果表明,掺入 5% 玻璃粉的超高性能混凝土的抗压强度最高,与对照超高性能混凝土相比,28 天抗压强度提高了 5.11%。此外,分别掺入 10% 和 15% 的 GP 后,UHPC 在 60 天内的后期抗压强度持续上升,表明 GP 不会阻碍强度的发展。使用多种微观测试技术表明,GP 具有胶凝反应和稀释效应,可增强水泥水化作用并增加水化产物的数量。因此,添加适量 GP 的 UHPC 的微观结构得到了明显改善。此外,随着 GP 含量的增加,UHPC 的二氧化碳排放量和生产成本也稳步下降。与对照 UHPC 相比,GP 含量为 15%的 UHPC 的生产成本降低了 1.47%,二氧化碳排放量降低了 7.39%。
Effect of glass powder on compressive strengths and microstructure of ultra-high-performance concrete
The most common methods for dealing with waste glass are landfilling or incineration, which cause wastage of resources. The method for preparing ultra-high-performance concrete (UHPC) by partially substituting cement with glass powder (GP) was herein studied in order to realize the
high value treatment of waste glass. The experimental results indicated that incorporation of 5% GP brought the highest compressive strengths for UHPC, which was increased by 5.11%, compared to the control UHPC in 28 days. Furthermore, the later-stage compressive strengths for UHPC at 60 days
increased continuously with incorporation of 10% and 15% GP, respectively, indicating that GP does not hinder the development of strengths. Using multiple micro testing techniques, it was indicated that, GP exhibited pozzolanic reaction and dilution effect, which can enhance cement hydration
and increased the amount of hydration products. Thus, the microstructure of UHPC with appropriate amount of GP was significantly improved. In addition, the CO2 emissions and production costs for UHPC decreased steadily with increased GP content. Compared to the control UHPC, UHPC
with 15% GP exhibited decreased by 1.47% in production costs and 7.39% in CO2 emissions.