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首页> 外文期刊>Journal of Cleaner Production >Recycling of bottom ash and fly ash wastes in eco-friendly clay brick production
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Recycling of bottom ash and fly ash wastes in eco-friendly clay brick production

机译:生态融合粘土砖生产中底灰和粉煤灰废物的回收

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摘要

The use of waste-based materials in the construction industry has received significant attention in recent years to develop environmentally-friendly construction materials. This paper presents an experimental study on the properties of bricks containing clay, fly ash (FA), and bottom ash (BA). A total of 12 batches of bricks were manufactured and experimental tests were conducted at two firing temperature of 950 and 1050 degrees C to determine the apparent porosity, water absorption, apparent specific gravity, bulk density, compressive strength, and thermal conductivity. Microstructural analysis was undertaken to describe the reasons for the obtained experimental results. The results show that the bricks fired at 1050 degrees C exhibit slightly lower apparent porosity and water absorption but slightly higher bulk density and thermal conductivity than those fired at 950 degrees C. The results also show that an increase in the FA content leads to an increase in the apparent porosity and water absorption but a decrease in bulk density and thermal conductivity of the bricks. BA content does not have any significant influence of the properties of the bricks. It is also shown that bricks containing 5% FA, 5% BA, and 10% BA exhibit a similar compressive strength to those containing only clay. The leaching results show that the leaching of heavy metals from fired bricks is significantly lower than that of the limit concentrations. The leaching concentrations of the samples show that the heavy metals were immobilized in the ceramic structures of all fired bricks. These highly promising findings suggest that up to 30% replacement of wastes with ashes can provide bricks to reduce the environmental impact of abundant waste products and conserve non-renewable natural resources. (C) 2019 Elsevier Ltd. All rights reserved.
机译:近年来近年来近年来,在建筑业中使用废料的材料才能开发环保型建筑材料。本文介绍了含有粘土,飞灰(FA)和底灰(BA)的砖的性质的实验研究。制造了12批砖块,并在950和1050℃的两个烧制温度下进行实验测试,以确定表观孔隙率,吸水,表观比重,堆积密度,抗压强度和导热率。进行了微观结构分析,以描述所获得的实验结果的原因。结果表明,在1050摄氏度下烧制的砖表现出略低的表观孔隙率和吸水性,但略高的堆积密度和导热率高于950℃。结果还表明FA含量的增加导致增加在表观孔隙和吸水率中,但砖块的堆积密度和导热率降低。 BA含量没有砖属性的任何重大影响。还表明,含有5%Fa,5%BA和10%BA的砖与仅含有粘土的砖表现出类似的压缩强度。浸出结果表明,来自燃烧砖的重金属的浸出显着低于极限浓度的浸出。样品的浸出浓度表明,重金属在所有烧制砖的陶瓷结构中固定在陶瓷结构中。这些高度承诺的研究结果表明,高达30%的灰烬更换废物可以为砖块提供砖块,以减少丰富的废物产品的环境影响,并节省不可再生的自然资源。 (c)2019 Elsevier Ltd.保留所有权利。

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