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首页> 外文期刊>Journal of Cleaner Production >Sustainable utilization of deinking paper mill sludge for the manufacture of building bricks
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Sustainable utilization of deinking paper mill sludge for the manufacture of building bricks

机译:脱墨造纸厂污泥在建筑砖生产中的可持续利用

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摘要

Building bricks were produced by utilizing deinking paper mill sludge (DPMS) and alluvial soil by varying percentage of sludge at different firing temperatures. Different mix proportions were prepared with 0%, 5%, 10%, 15%, 20%, 25% and 30% of DPMS incorporation in alluvial soil by weight. Three firing temperatures of 900 degrees C, 950 degrees C and 1000 degrees C were investigated to simulate the typical condition of kiln. The density, firing shrinkage, water absorption, efflorescence, apparent porosity, compressive strength and thermal conductivity of the bricks were determined. The XRD and microstructural analysis of brick specimens were also studied. The optimum firing temperature was 950 degrees C. The thermal conductivity decreases with increase in percentage of deinking paper mill sludge. It was found that 15% deinking paper mill sludge gives optimum strength at firing temperature of 950 degrees C. Developed bricks satisfy the requirements of class 10 of Bureau of Indian Standards (BIS), in terms of efflorescence, compressive strength and water absorption. Thermal conductivity results show that the developed brick was thermally more insulated than the conventional bricks and can be used as alternative to conventional bricks. This will address the issue of waste management through cleaner production and show the ways towards sustainable, economical and energy efficient construction. (C) 2018 Elsevier Ltd. All rights reserved.
机译:建筑砖是通过使用脱墨造纸厂的污泥(DPMS)和冲积土在不同烧成温度下改变污泥百分比来生产的。制备不同的混合比例,其中按重量计,DPMS以0%,5%,10%,15%,20%,25%和30%的量掺入了冲积土。研究了900摄氏度,950摄氏度和1000摄氏度这三种烧成温度,以模拟窑的典型条件。测定了砖的密度,烧成收缩率,吸水率,发花率,表观孔隙率,抗压强度和导热率。还研究了砖样品的XRD和显微结构分析。最佳焙烧温度为950摄氏度。导热系数随着脱墨造纸厂污泥百分比的增加而降低。发现在950摄氏度的烧成温度下,有15%的脱墨造纸厂污泥可提供最佳强度。开发的砖在风化,抗压强度和吸水性方面满足印度标准局(BIS)的10级要求。导热率结果表明,所开发的砖比常规砖具有更高的隔热性,并且可以替代常规砖。这将通过清洁生产解决废物管理问题,并显示实现可持续,经济和节能建筑的方法。 (C)2018 Elsevier Ltd.保留所有权利。

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