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Study on the feasibility of using iron ore tailing (iot) on technological properties of concrete roof tiles

机译:使用铁矿石拖尾的可行性研究混凝土瓦瓦砖技术特性

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摘要

The mining industry produces large amounts of waste during the iron ore processing. This material is usually discarded into tailing dams, posing high maintenance and monitoring costs as well as causing serious environmental disruptions, such as air contamination and leaching of substances. The reuse of such waste as alternative materials in the construction industry is an alternative to its disposal. Therefore, this study aimed at evaluating the effect of using iron ore tailing (DDT) on the physical, mechanical, thermal and durability properties of concrete roof tiles obtained by the extrusion process. The base trace in mass consisted of 1 : 3 : 0.56 (cement : medium grade natural sand : limestone powder). The treatments were based on 25, 50, 75, and 100% mass replacement of limestone powder by iron ore tailing. After shaping, the concrete roof tiles were taken to a saturated humidity chamber at room temperature for 28 days. Concrete roof tiles were evaluated for water absorption, dry weight, transverse breaking strength, bulk density, apparent porosity properties and microstructure at 28 curing days and after accelerated aging. Thermal conductivity, wettability, XRD, permeability and impact resistance analyses of roof tiles were also performed. There were significant transverse breaking strength and porosity values improvements as a result of using greater amount of DOT compared to traditional concrete roof tiles. The technological properties were improved by increasing the amount of waste, meeting international marketing standards. The use of iron ore tailing as total LP replacement showed great potential for use as raw material for concrete roof tiles production, allowing the correct disposal and development of new, more sustainable products, as well as the improvement of roof tiles physical and mechanical properties. (C) 2021 Elsevier Ltd. All rights reserved.
机译:采矿业在铁矿石加工过程中产生大量废物。这种材料通常被丢弃到尾矿坝中,造成高维护和监测成本以及引起严重的环境中断,例如空气污染和物质的浸出。作为建筑业中的替代材料重用这种废物是替代的替代。因此,本研究旨在评估使用铁矿石拖尾(DDT)对通过挤出过程获得的混凝土瓦砖的物理,机械,热和耐久性性能的影响。质量的基础迹线由1:3:0.56(水泥:中等天然砂:石灰石粉)组成。该处理基于25,50,75和100%通过铁矿石拖尾替代石灰石粉末的大量替代物。成形后,将混凝土瓦瓦片在室温下在饱和湿度室中取出28天。在28个固化天和加速老化后,评估混凝土屋顶瓦片进行吸水,干重,横向断裂强度,堆积密度,表观孔隙率特性和微观结构。还进行了屋顶瓦片的导热性,润湿性,XRD,渗透性和抗冲击性分析。与传统的混凝土瓦瓦相比,使用更大量的圆点的结果,存在显着的横向断裂强度和孔隙率值。通过增加浪费量,符合国际营销标准,改善了技术特性。作为总LP替换的使用铁矿石拖尾的使用表现出使用作为混凝土瓦片生产的原料的巨大潜力,允许正确的处置和开发新的,更可持续的产品,以及屋顶砖的改善物理和机械性能。 (c)2021 elestvier有限公司保留所有权利。

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