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Utilizing industrial waste-water as alkali activator in sand-cement kiln dust bricks

机译:在沙水泥窑粉砖中利用工业废水作为碱活化剂

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Recycling of wastes as building materials appears to be viable solution; not only to overcome pollution problems but also for economical purposes. In this study the cement kiln dust (CKD) produced during the production of ordinary Portland cement was used to produce sand-CKD bricks at 25, 30 and 35% CKD of the dry weight. Also, two types of industrial alkaline waste-water of textile and aluminum pots factories with 850, 8000, 12,500 and 52,000 ppm were used as mixing water, beside the use of tap water in the reference mix. After complete drying, the samples were subjected to heat curing at different temperatures of 120, 150 and 200 degrees C for different times of 3, 6, 12 and 24 h. The sand-CKD bricks made with 30% CKD, 12,500-52,000 ppm alkaline waste-water and heat cured at 120 degrees C for 3 h had compressive strength of 12.5 MPa, unit weight of 1.66 ton/m(3) and water absorption of 10%. Increasing the heating temperature to 200 degrees C for 12 h raised the compressive strength and water absorption to 16.5 MPa and 13.7%, respectively, while decreased the unit weight to 1.46 ton/m(3). (C) 2018 Elsevier Ltd. All rights reserved.
机译:回收作为建筑材料的废物似乎是可行的解决方案;不仅要克服污染问题,而且还出于经济目的。在本研究中,使用普通波特兰水泥生产过程中产生的水泥窑粉尘(CKD)生产干重为25、30和35%CKD的沙质CKD砖。此外,除了参考混合物中使用自来水外,还使用了850、8000、12500和52000 ppm的两种类型的纺织和铝罐工厂的工业碱性废水作为混合水。完全干燥后,将样品在120、150和200摄氏度的不同温度下热固化3、6、12和24小时的不同时间。由30%CKD,12,500-52,000 ppm碱性废水制成并在120摄氏度下加热固化3 h的沙质CKD砖的抗压强度为12.5 MPa,单位重量为1.66吨/米(3),吸水率为10%。将加热温度提高到200摄氏度持续12 h,分别将抗压强度和吸水率分别提高到16.5 MPa和13.7%,同时将单位重量降低到1.46 ton / m(3)。 (C)2018 Elsevier Ltd.保留所有权利。

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