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The functional and environmental performance of mixed cathode ray tubes and recycled glass as partial replacement for cement in concrete

机译:混合阴极射线管和再循环玻璃的功能和环境性能作为混凝土水泥的部分替代

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Concrete is one of the most abundantly produced and commonly used construction materials in the world. The production of cement - the main binder in concrete - is energy-intensive, using roughly ten times the national average ratio for energy to gross output of goods and services. Given the high demand for concrete globally and the amount of energy used to produce cement, it is worthwhile to find lower embodied-energy materials to partially replace cement to improve the environmental impacts of concrete without decreasing the concrete performance. One such potential cement replacement is the panel glass found in discarded cathode-ray tubes (CRTs). It is against this backdrop that this study aimed to investigate the technical feasibility and the environmental impacts of using a novel blend of recycled glass and CRT panel glass as pozzolanic material for replacing a portion of ordinary portland cement (OPC) in concrete, Additionally, this study simultaneously looked at the concrete functional performance and environmental impact, and the study was performed at an industrial scale using existing production infrastructure, production volumes, standardized testing, and a life-cycle assessment (LCA) to support the functional testing and environmental impact quantification. Results show that the novel blend of glass met the required performance standards, and when it was blended with cement, the mixture produced concrete with similar or improved functional performance and significantly reduced environmental impacts across all examined impact categories. Future work is needed to examine the additional benefits of diverting CRTs from their current end-of-life pathways and de-risking CRT storage.
机译:混凝土是世界上最丰富和常用的建筑材料之一。水泥的生产 - 混凝土中的主要粘合剂 - 是能量密集型的,使用全国平均比率的大约十倍的能源,以总产量的商品和服务。鉴于全球对混凝土的高需求和用于生产水泥的能量,值得寻找较低的体现 - 能量材料,以部分替代水泥,以改善混凝土的环境影响而不会降低混凝土性能。一种这种潜在的水泥更换是在丢弃的阴极射线管(CRT)中发现的面板玻璃。这项研究旨在调查使用新颖的玻璃和CRT面板玻璃的技术可行性和环境影响,以便在混凝土中更换一部分普通波特兰水泥(OPC)的普通波特兰水泥(OPC)。研究同时看着具体的功能性能和环境影响,并且使用现有的生产基础设施,生产体积,标准化测试和生命周期评估(LCA)以工业规模进行了研究,以支持功能测试和环境影响量化。结果表明,玻璃的新颖混合物符合所需的性能标准,而当它与水泥混合时,该混合物产生了类似或改善功能性能的混凝土,并显着降低了所有检查的影响类别的环境影响。需要未来的工作来检查从目前的寿命途径和失败的CRT存储中转移CRT的额外效益。

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