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Coal mine wastes recycling for coal recovery and eco-friendly bricks production

机译:煤矿废弃回收煤炭回收和环保砖生产

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The mining industry is globally criticized for generating large amount of solid wastes often with a potential environmental impact. This study presents a feasible approach of recovering residual coal from coal mine waste rocks (CMWR) and reusing the derived tailings to produce ecofriendly fired bricks. The first step aims at the production of high grade anthracite coal concentrate using a physical treatment method which consists of consecutive stages of crushing, grinding and froth flotation. Coal (organic matter) was recovered in order to enhance the mechanical strength of bricks and to reduce the greenhouse gas (GHG) emissions during the firing process. The second step of the process consists of the mixture of the decar-bonated tailings, called treated coal mine tailings (TCMT), with a small amount of water, pressed and fired at an optimal temperature of 1020 degrees C for the production of ecofriendly bricks at a laboratory scale. Fired bricks containing no other raw materials than CMWR or its derived TCMT have been produced showing in both cases very interesting ornamental looks. The study assessed the effects of removing coal from CMWR on the physical and technical properties of the derived fired bricks. The removal of coal from CMWR enhanced the quality of fired bricks by increasing its flexural strength and decreasing the open porosity and water absorption. In addition, the results show that this integrated process reduces the amount of GHG emissions by more than 70% and allows a sustainable production of fired bricks. (C) 2016 Elsevier Ltd. All rights reserved.
机译:矿业行业全球批评,常常常有环境影响,常有产生大量的固体废物。本研究提出了一种可行的煤矿废物岩石(CMWR)回收残余煤的方法,并重新使用衍生的尾矿以生产Ecofriendly燃烧的砖块。第一步旨在使用物理处理方法生产高级无烟煤浓缩物,该方法由碎,研磨和泡沫浮选的连续阶段组成。回收煤(有机物)以提高砖的机械强度,并在烧制过程中减少温室气体(温室气体)排放量。该过程的第二步包括脱沥尾尾矿的混合物,被称为经过处理的煤矿尾矿(TCMT),用少量的水,在1020℃的最佳温度下压制并烧制,以生产Ecofriendly砖在实验室规模。在两种情况下,在两种情况下都已经产生了没有与CMWR或其衍生的TCMT的其他原料的烧制砖。该研究评估了从CMWR上除去煤的效果对衍生的燃烧砖的物理和技术性质。通过增加其弯曲强度并降低开放孔隙度和吸水性,从CMWR取出煤的质量增强了燃烧砖的质量。此外,结果表明,该综合处理将温室气体排放量减少了70%以上的温室气体排放量,并允许燃烧砖的可持续生产。 (c)2016 Elsevier Ltd.保留所有权利。

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