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Efficiency removal of copper from potable water using a pine bark porous media

机译:使用松树皮多孔介质有效去除饮用水中的铜

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All over the world the presence of heavy metals in water supply sources has been raising great concern in terms of public health since many epidemiologic studies confirm the potential carcinogenic effect of these pollutants at concentrations above acceptable standards. Because copper removal is the most frequent option to achieve a safe drinking water, the development of more efficient and sustainable water treatment technologies is extremely relevant. Reactive filtration using natural sorbent materials constitutes a promising and suitable process for drinking water treatment as a sustainable alternative to the conventional sand porous media, due to the their additional sorptive. Additionally, the use of natural materials abundant in the region as a by-product from regional industrial activity enhances the sustainability of these emerging treatment solutions. This work presents results and a few conclusions based on a laboratorial study performed to evaluate the efficiency of copper removal from potable water using a pine bark porous media under different experimental conditions for relevant hydraulic and physic-chemical parameters. Langmuir and linear isotherms were used to describe the sorption equilibrium data. The obtained lab-scale results allowed to establish sorption kinetics and showed removal efficiencies higher than 90%.
机译:由于许多流行病学研究证实了浓度超过可接受标准的这些污染物的潜在致癌作用,全世界供水源中重金属的存在一直引起公众关注。由于除铜是获得安全饮用水的最常见选择,因此开发更高效和可持续的水处理技术至关重要。使用天然吸附剂进行反应过滤,由于它们具有额外的吸附性,因此构成了一种有前途且合适的饮用水处理方法,可作为常规砂多孔介质的可持续替代品。此外,使用该地区丰富的天然材料作为区域工业活动的副产品可增强这些新兴治疗解决方案的可持续性。这项工作基于一项实验室研究提供了结果和一些结论,该实验室研究使用松树皮多孔介质在不同的实验条件下针对相关水力和物理化学参数评估了饮用水中铜的去除效率。用Langmuir和线性等温线描述吸附平衡数据。获得的实验室规模的结果可以建立吸附动力学,并显示出高于90%的去除效率。

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