NRF/DST Chair, Sustainable Process Engineering, School of Chemical and Metallurgical Engineering, Faculty of Engineering and Built Environment, University of the Witwatersrand, Johannesburg, South Africa.
Environ Sci Pollut Res Int. 2021 Mar;28(9):10488-10502. doi: 10.1007/s11356-020-12263-0. Epub 2021 Jan 11.
The environmental impact of waste glass (WG) is one of the major challenges crippling sustainable waste management and mitigation. Reclamation of recycled materials from waste glass remains a tedious task amidst complex technological approaches. The challenge as seen in the global containment measures increase the proportion of waste glass and minimize the existing capacity of landfill space. In many works, findings have shown how best to minimize the impact of waste glass as evidenced in their inclusion as building materials such as cement, mortars, concretes and blocks. The concept of this paper is to appraise previous studies carried out on the use of waste glass as key contributing factor in structural building. The scope of this paper will be broaden to include various successes recorded in the evolution of concrete mixtures containing different proportion of recycle glass. Part of the setbacks noted in the inclusion of these recycled materials as matrix, filler or fibre are also reported in this paper. Also discussed is the durability of glass materials in varying conglomerate involving cement in reinforcement of building and structures. Thermal insulating properties of recycled glass are also considered in this work where considerable energy is saved due to their low thermal conductivity. Based on the analysis of various studies and other factors considered in this paper, it is established that recycled glass materials can be accommodated in structural buildings, while continuous research is necessary to adapt waste glass to high pH value of Portland cement.
废玻璃(WG)对环境的影响是对可持续废物管理和缓解造成重大挑战的主要因素之一。从废玻璃中回收再利用材料仍然是一项艰巨的任务,需要采用复杂的技术方法。随着全球遏制措施的增加,这一挑战导致废玻璃的比例增加,现有的垃圾填埋空间容量减少。在许多研究中,已经发现了如何最大限度地减少废玻璃的影响,例如将其用作建筑材料,如水泥、灰浆、混凝土和砌块。本文的目的是评估以前关于将废玻璃用作结构建筑关键因素的研究。本文的范围将扩大到包括含有不同比例回收玻璃的混凝土混合物的演变过程中记录的各种成功案例。本文还报告了在将这些回收材料作为基质、填料或纤维纳入时遇到的部分挫折。本文还讨论了玻璃材料在涉及水泥增强建筑和结构的不同聚合体中的耐久性。由于其低热导率,回收玻璃的热绝缘性能也在这项工作中得到了考虑。基于对本文中各种研究的分析和其他考虑因素的分析,可以确定回收玻璃材料可以容纳在结构建筑中,同时需要进行持续的研究,以适应废玻璃与波特兰水泥的高 pH 值。