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Phosphorus recovery from sewage with a sustainable and low-cost treatment system

机译:磷从污水中恢复,可持续和低成本的处理系统

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This study proposes a technology conceived based on an integrative approach that aims to promote phosphorus recovery and to recycle ferric water treatment sludge (FWTS), using it as a phosphorus adsorbent which may be applied as a soil ameliorant after reaching saturation. The assessed pilot plant operated with a daily influent flow of 360 litres and presented a removal efficiency of 94.4% +/- 3.2% for chemical oxygen demand (COD) and of 91.2% +/- 7.8% for suspended solids. It also presented promising results for phosphorus removal. The maximum efficiency of dissolved reactive phosphorus removal was 95% on the first day and it decreased until reaching adsorbent saturation. The estimated breakthrough time was one year in the condition in which the filling medium of a second constructed wetland was only FWTS. In this situation, the effluent phosphorus concentration was 0.2 mg center dot L-1. The authors concluded that the application of FWTS in a constructed wetland bed is an interesting alternative. Batch adsorption experiments were run using phosphorus stock solution. Langmuir and Freundlich adsorption isotherm models were obtained for different initial pH values. The maximum adsorption capacity decreased as the initial pH was increased; values ranged from 4.76 mg P center dot g(-1) (pH = 3.9) to 1.44 mg P center dot g(-1) (pH = 9.0).
机译:本研究提出了一种基于旨在促进磷回收和再循环铁水处理污泥(FWT)的综合方法的技术,用作磷吸附剂,该吸附剂可以在达到饱和后作为土壤改良剂施用。评估的试验厂以每日360升的日常流入流动,呈现出化学需氧量(COD)的去除效率为94.4%+/- 3.2%,悬浮固体的91.2%+/- 7.8%。它还提出了磷去除的有希望的结果。第一天溶解反应性磷去除的最大效率为95%,并且在达到吸附剂饱和度之前降低。估计的突破时间是一年的填充介质仅为FWT的填充介质。在这种情况下,流出物磷浓度为0.2mg中心点L-1。作者得出结论,FWT在建造的湿地床上的应用是一个有趣的替代方案。使用磷储备溶液运行批量吸附实验。为不同的初始pH值获得Langmuir和Freundlich吸附等温线模型。随着初始pH值增加,最大吸附容量降低;值范围从4.76 mg p中心点G(-1)(pH = 3.9)至1.44mg p中心点G(-1)(pH = 9.0)。

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