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Sustainable production of concrete with treated alum sludge

机译:经过治疗的植物污泥的混凝土可持续生产

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A huge amount of unwanted sludge produced daily from water and wastewater treatment plants and disposed into landfills which cause a numerous environmental challenges. This study aims to investigate the effect of replacing cement by alum sludge (AS) on the performance of normal concrete. The replacement levels of the AS by weight of cement were: 0%, 2%, 4%, 6%, and 8%. Slump test was performed on fresh concrete to measure workability. The mechanical and durability properties were investigated on two concrete curing ages (after 7 days and 28 days). The scanning electron microscopy (SEM) test was carried out after 28 days of curing. Results showed that, the mechanical strengths and workability of concrete tend to decrease as the replacement level of cement with the AS increases. The optimal mechanical strengths were indicated at 4.0% replacement level of cement by AS with the addition of 2% superplasticizer (SP). The reduction in the optimal compressive and flexural strengths were up to 25.6% and 6.5% compared with the control mix after 28 days of curing, respectively. In addition, the treated AS enhances the durability properties of concrete at all ages. The lowest water absorption percentage (1.06%), gas permeability (1.03 x 10 (16)m(2)) and chloride penetration (5 mm) were associated with the highest replacement level of cement with AS (8%) and addition of 2% SP, after 28 days of curing period. Overall, incorporation of treated AS in concrete production could be useful in protecting the environment by reducing the volume of alum sludge in the landfill. (C) 2021 Elsevier Ltd. All rights reserved.
机译:每天生产的大量不需要的污泥来自水和废水处理厂,并分为垃圾填埋场,导致众多环境挑战。本研究旨在探讨铝污泥(AS)对正常混凝土性能取代水泥的影响。按水泥重量的替代水平为:0%,2%,4%,6%和8%。对新鲜混凝土进行坍落度测试以测量可加工性。研究了两种混凝土固化年龄(7天和28天后)的机械和耐久性。扫描电子显微镜(SEM)试验在固化28天后进行。结果表明,混凝土的机械强度和可加工性往往会随着随着随着水泥的替代水泥水平而降低。随着添加2%超级塑化剂(SP),通过添加2.0%的替代水泥的最佳机械强度。与治疗28天后,相比,最佳压缩和抗压强度的降低高达25.6%和6.5%。此外,治疗的原样提高了所有年龄段的混凝土的耐久性。最低的吸水率(1.06%),气体渗透率(1.03×10(16)M(2))和氯化穿透(5毫米)的用具有AS(8%)和另外的2水泥的最高替换等级相关联%SP,练习期28天后。总体而言,作为混凝土生产中的经处理的掺入可用于通过减少垃圾填埋场中的铝污泥体积来保护环境。 (c)2021 elestvier有限公司保留所有权利。

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