Islam Shriful, Islam Junaidul, Alam Md Jahir Bin, Chowdhury Ananya Soheli, Hasnat Nabid
Department of Civil and Environmental Engineering, Shahjalal University of Science and Technology, Sylhet, 3114, Bangladesh.
Heliyon. 2024 Sep 30;10(19):e38754. doi: 10.1016/j.heliyon.2024.e38754. eCollection 2024 Oct 15.
Natural sand (NS) is one of the most used engineering materials in almost all types of construction worldwide. Considering environmental sustainability, the replacement of natural sand with crushed glass waste (CWG) can provide a solution for both geo-environmental problems of natural sand depletion and waste glass disposal at a time, since sand and glass share almost similar chemical components. This research aimed to investigate the mechanical behaviors of natural sand replaced with fine CWG particles by 5 %, 10 %, 15 %, 20 %, 25 %, 30 %, and 35 % of dry weight. NS-CWG optimum composition was then stabilized by adding Class C fly ash (FA) from 5 to 35 % of NS-CWG to find out the optimum FA content to stabilize NS-CWG. The effects were analyzed through compaction, direct shear, and California Bearing Ratio (CBR) tests. Test results showed that maximum dry density increased, and optimum moisture content decreased due to adding CWG, and a contrasting effect was found after adding FA. 25 % FA significantly stabilized the NS-CWG mixture's strength parameters, such as increased cohesion, angle of internal friction, improved shear strength by 55.67 %, and increased CBR by 44 %. The decreased roundness index and scanning electronic microscopy (SEM) test results further evaluated and supported the improved geotechnical properties of NS + CWG + FA. The findings of the study can be useful in producing recycled materials for constructing road pavements of sustainable transport network development.
天然砂(NS)是全球几乎所有类型建筑中使用最广泛的工程材料之一。考虑到环境可持续性,用碎玻璃废料(CWG)替代天然砂可以同时为天然砂枯竭的地质环境问题和废弃玻璃处理提供解决方案,因为砂和玻璃的化学成分几乎相似。本研究旨在研究用5%、10%、15%、20%、25%、30%和35%干重的细CWG颗粒替代天然砂后的力学性能。然后通过添加占NS-CWG 5%至35%的C类粉煤灰(FA)来稳定NS-CWG的最佳组成,以找出稳定NS-CWG的最佳FA含量。通过压实、直接剪切和加州承载比(CBR)试验分析效果。试验结果表明,添加CWG会使最大干密度增加,最佳含水量降低,添加FA后则发现相反的效果。25%的FA显著稳定了NS-CWG混合物的强度参数,如凝聚力增加、内摩擦角增大、抗剪强度提高55.67%,CBR增加44%。圆形度指数的降低和扫描电子显微镜(SEM)测试结果进一步评估并支持了NS + CWG + FA岩土性能的改善。该研究结果可用于生产再生材料,以构建可持续交通网络发展的道路路面。