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Recovery of in-sewer dosed iron from digested sludge at downstream treatment plants and its reuse potential

机译:在下游处理厂中从消化的污泥中回收污水中的铁元素及其再利用潜力

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摘要

Iron-based coagulants are dosed in enormous amounts and play an essential role in various segments of our urban water infrastructure. In order for the water industry to become circular, a closed-loop management strategy for iron needs to be developed. In this study, we have demonstrated for the first time that in-sewer dosed iron, either in the form of FeCl3 or ferric-based drinking water sludge (Fe-DWS) as a means to combat sewer corrosion and odour, can be recovered in the form of vivianite in digested sludge in down-stream wastewater treatment plants. Importantly, about 92 +/- 2% of the in-sewer dosed Fe was estimated to be bound in vivianite in digested sludge. A simple insertion of Neodymium magnet allowed to recover 11 +/- 0.2% and 15.3 +/- 0.08% of the vivianite formed in the digested sludge of the in-sewer dosed iron in the form of FeCl3 and Fe-DWS, respectively. The purity of recovered vivianite ranged between 70 +/- 5% and 49 +/- 3% for in-sewer dosed FeCl3 and Fe-DWS, respectively. Almost complete (i.e. 98 +/- 0.3%) separation of Fe in the form of ferrihydrite was achieved from vivianite after alkaline washing. Subsequent batch experiments demonstrated that the recovered ferrihydrite can be directly reused for efficient sulfide control in sewers. At a ferrihydrite-Fe:S molar ratio of 1.2:1, sewage dissolved sulfide concentrations was reduced from 15 mgS/L to below 0.5 mgS/L within 1 h of reaction. Overall, the results obtained in our study flag a first step for utilities towards a closed-loop iron-based coagulant management approach. (C) 2020 Elsevier Ltd. All rights reserved.
机译:铁基混凝剂的用量非常大,在我们城市供水基础设施的各个部分中都发挥着至关重要的作用。为了使水工业变得循环发展,需要制定铁的闭环管理策略。在这项研究中,我们首次证明了可以在污水处理厂中回收以FeCl3或铁基饮用水污泥(Fe-DWS)形式存在于下水道的计量铁,以对抗下水道的腐蚀和异味。在下游废水处理厂中的消化污泥中的堇青石形式。重要的是,据估计,约有92 +/- 2%的污水中添加的Fe结合在消化污泥中的Vivianite中。只需插入钕磁铁,就可以回收下水道掺入的铁中以FeCl3和Fe-DWS形式消化的污泥中形成的永辉石的11 +/- 0.2%和15.3 +/- 0.08%。对于污水中添加的FeCl3和Fe-DWS,回收的Vivianite的纯度分别在70 +/- 5%和49 +/- 3%之间。碱洗后,从水辉石几乎完全(即98 +/- 0.3%)的铁形式的水铁矿分离。随后的批处理实验表明,回收的亚铁水合物可直接重新用于下水道中的硫化物有效控制。在水铁矿-Fe:S摩尔比为1.2:1的情况下,反应1小时内污水中溶解的硫化物浓度从15 mgS / L降至0.5 mgS / L以下。总体而言,在我们的研究中获得的结果标志着公用事业朝着闭环铁基凝结剂管理方法迈出的第一步。 (C)2020 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Water Research》 |2020年第may1期|115627.1-115627.8|共8页
  • 作者

  • 作者单位

    Univ Queensland Sch Civil Engn Brisbane Qld 4072 Australia|Univ Queensland Adv Water Management Ctr Brisbane Qld 4072 Australia;

    Univ Queensland Adv Water Management Ctr Brisbane Qld 4072 Australia;

    Catalan Inst Water Res ICRA Girona 17003 Spain|Catalan Inst Res & Adv Studies ICREA Barcelona 08010 Spain;

    Univ Queensland Sch Chem Engn Brisbane Qld 4072 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Resource efficiency; Sulfide control; Coagulant recovery; Integrated management; Circular economy;

    机译:资源效率;硫化物控制;混凝剂回收;综合管理;循环经济;

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