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Semi-green cementitious materials from waste granite by considering the environmental, economic, and health impacts: A review

机译:考虑环境,经济和健康影响的废花岗岩制成的半绿色水泥材料:综述

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In this review, the studies conducted on the use of recycled waste granite (WG) in place of different components in concrete or cementitious materials, such as aggregate and cement were reviewed. In this regard; research was conducted on the reuse of WG to make economic benefit, to prevent accumulation of WG, to contribute to the environment by helping in the formation of new materials from waste material, and the use of WG, which would generate hazardous radioactive gas to human health, in concrete production. Thus, the cementitious materials that will be obtained shall be environment-friendly, economic, and helpful in the isolation of hazardous radioactive wastes. Therefore, within the scope of this study, it was investigated whether semi-green cementitious materials obtained from recycling WG would have the mechanical characteristics to satisfy the requirements, and have equivalent or even surpassing characteristics compared to materials made from classic materials. The results were obtained at a substitution rate of 5-7.5%; when recycled WG was used in place of aggregate, the results were obtained at a substitution rate of 15-25%; and when recycled WG was used in place of coarse aggregate, it gave better performance than recycled normal concrete aggregate and worse performance than crushed quartzite coarse aggregate. Furthermore, in terms of economy, it was determined that the utilization of WG would decrease costs by a minimum of 0.54% and a maximum of 2.1%; while with respect to CO2 emissions, the use of WG could decrease worldwide CO2 emission by 5%. Also, it was determined that the best solution for granite, which could cause gas emissions of hazardous gases such as radon gas, would be to be used in concrete that would be exposed to open air.
机译:在这篇综述中,回顾了有关使用再生废花岗岩(WG)代替混凝土或胶凝材料中的不同成分(例如集料和水泥)的研究。在这方面;对WG的再利用进行了研究,以期获得经济利益,防止WG的积累,通过帮助从废料中形成新材料来为环境做出贡献以及使用WG,WG的使用会对人类产生有害的放射性气体健康,在混凝土生产中。因此,将获得的胶结材料应是环境友好的,经济的,并有助于隔离危险的放射性废物。因此,在本研究的范围内,研究了回收WG所获得的半绿色水泥材料是否具有满足要求的机械特性,并且与传统材料制成的材料相比具有同等甚至超越的特性。以5-7.5%的取代率获得结果;当使用回收的WG代替骨料时,替代率为15-25%。当使用再生WG代替粗骨料时,其性能要优于再生普通混凝土骨料,而其性能却比碎石英岩粗骨料差。此外,从经济性的角度出发,已确定使用工作组将使成本降低至少0.54%,最多降低2.1%;而就CO2排放而言,使用WG可以使全球CO2排放减少5%。另外,已确定花岗岩的最佳解决方案将用于暴露于露天的混凝土中,该解决方案可能会导致有害气体(如gases气)的气体排放。

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