Qureshi Hisham Jahangir, Ahmad Jawad, Majdi Ali, Saleem Muhammad Umair, Al Fuhaid Abdulrahman Fahad, Arifuzzaman Md
Department of Civil and Environmental Engineering, College of Engineering, King Faisal University, Al-Ahsa 31982, Saudi Arabia.
Department of Civil Engineering, Swedish College of Engineering, Wah Cantt 47070, Pakistan.
Materials (Basel). 2022 Nov 3;15(21):7761. doi: 10.3390/ma15217761.
Every year, millions of tons of red mud (RDM) are created across the globe. Its storage is a major environmental issue due to its high basicity and tendency for leaching. This material is often kept in dams, necessitating previous attention to the disposal location, as well as monitoring and maintenance during its useful life. As a result, it is critical to develop an industrial solution capable of consuming large quantities of this substance. Many academics have worked for decades to create different cost-effective methods for using RMD. One of the most cost-effective methods is to use RMD in cement manufacture, which is also an effective approach for large-scale RMD recycling. This article gives an overview of the use of RMD in concrete manufacturing. Other researchers' backgrounds were considered and examined based on fresh characteristics, mechanical properties, durability, microstructure analysis, and environmental impact analysis. The results show that RMD enhanced the mechanical properties and durability of concrete while reducing its fluidity. Furthermore, by integrating 25% of RDM, the environmental consequences of cumulative energy demand (CED), global warming potential (GWP), and major criteria air pollutants (CO, NO, Pb, and SO) were minimized. In addition, the review assesses future researcher guidelines for concrete with RDM to improve performance.
每年,全球都会产生数百万吨赤泥(RDM)。由于其高碱性和易浸出性,其储存是一个重大的环境问题。这种材料通常存放在大坝中,因此需要事先关注处置地点以及在其使用期限内的监测和维护。因此,开发一种能够消耗大量这种物质的工业解决方案至关重要。许多学者已经努力了数十年,以创造不同的具有成本效益的赤泥利用方法。最具成本效益的方法之一是在水泥生产中使用赤泥,这也是大规模赤泥回收利用的有效途径。本文概述了赤泥在混凝土生产中的应用。基于新拌特性、力学性能、耐久性、微观结构分析和环境影响分析,对其他研究人员的背景进行了考量和审视。结果表明,赤泥提高了混凝土的力学性能和耐久性,同时降低了其流动性。此外,通过掺入25%的赤泥,累计能源需求(CED)、全球变暖潜势(GWP)和主要标准空气污染物(CO、NO、Pb和SO)的环境影响降至最低。此外,该综述评估了未来关于含赤泥混凝土的研究指南,以提高其性能。