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Characteristics of treated effluents and their potential applications for producing concrete

机译:处理后的废水的特性及其在生产混凝土中的潜在应用

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摘要

Conservation and preservation of freshwater is increasingly becoming important as the global population grows. Presently, enormous volumes of freshwater are used to mix concrete. This paper reports experimental findings regarding the feasibility of using treated effluents as alternatives to freshwater in mixing concrete. Samples were obtained from three effluent sources: heavy industry, a palm-oil mill and domestic sewage. The effluents were discharge into public drain without danger to human health and natural environment. Chemical compositions and physical properties of the treated effluents were investigated. Fifteen compositional properties of each effluent were correlated with the requirements set out by the relevant standards. Concrete mixes were prepared using the effluents and freshwater to establish a base for control performance. The concrete samples were evaluated with regard to setting time, workability, compressive strength and permeability. The results show that except for some slight excesses in total solids and pH, the properties of the effluents satisfy the recommended disposal requirements. Two concrete samples performed well for all of the properties investigated. In fact, one sample was comparatively better in compressive strength than the normal concrete; a 9.4% increase was observed at the end of the curing period. Indeed, in addition to environmental conservation, the use of treated effluents as alternatives to freshwater for mixing concrete could save a large amount of freshwater, especially in arid zones.
机译:随着全球人口的增长,淡水的保存和保存变得越来越重要。目前,大量的淡水用于混合混凝土。本文报告了有关在混合混凝土中使用处理后的废水替代淡水的可行性的实验结果。样品取自三种废水来源:重工业,棕榈油厂和生活污水。废水排入公共排水系统,对人体健康和自然环境没有危害。研究了处理后废水的化学成分和物理性质。每种废水的15种成分特性与相关标准规定的要求相关。使用废水和淡水制备混凝土混合物,为控制性能奠定基础。对混凝土样品的凝固时间,可加工性,抗压强度和渗透性进行了评估。结果表明,除了总固体和pH值略有过量外,废水的特性均满足建议的处理要求。对于所有研究的性能,两个混凝土样品均表现良好。实际上,一个样品的抗压强度比普通混凝土要好。在固化期结束时观察到9.4%的增加。实际上,除了环境保护之外,使用处理后的废水代替淡水替代混凝土来混合混凝土还可以节省大量的淡水,尤其是在干旱地区。

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