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Implementation of a global P-recovery system in urban wastewater treatment plants

机译:城市污水处理厂全球P恢复系统的实施

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摘要

Current wastewater treatment plants (WWTPs) paradigm is moving towards the so-called water resource recovery facilities in which sewage is considered a source of valuable resources. In particular, urban WWTPs are crucial systems to enhance phosphorus (P) recycling. This paper evaluates the implementation of a P-recovery system in Calahorra WWTP combining the operation of a new sludge line configuration coupled to a struvite crystallisation reactor at demonstration-scale. This new configuration consisted in the elutriation in the gravity thickener of the mixed sludge contained in the mixing chamber in order to reduce the phosphate load to the anaerobic digestion. The results indicated that the P available in the primary sludge overflow was nearly five times more than the obtained for the conventional configuration (1.88 vs. 0.39 gP/kg sludge treated), and the uncontrolled P precipitation inside the anaerobic digester was reduced by 43%. Regarding the total P entering the WWTP, 19% of the total P could be recovered with the new configuration proposed in comparison with 9% in the previous conventional configuration. The average recovery efficiency in the crystallisation plant was 86.9 0.4%, yielding a struvite recovery of 8.0 +/- 0.6 kg/d (0.67 +/- 0.04 kg/m(3) fed to the crystalliser). The potential struvite production with the new configuration would be around 41 kg/d (15 t/y) crystallising the thickener supernatant which could be increased up to around 103 kg/d (38 t/y) treating all the P enriched streams (thickener supernatant and centrate streams). The paper demonstrates that WWTPs can contribute to reduce P scarcity, resulting in environmental and economic benefits. (C) 2019 Elsevier Ltd. All rights reserved.
机译:目前的废水处理厂(WWTPS)范式正在朝着所谓的水资源回收设施迈进,污水被认为是有价值的资源来源。特别是,城市WWTPS是增强磷(P)回收的重要系统。本文评估了CALAHORA WWTP中P恢复系统的实施,将新的污泥线配置的操作相结合,耦合到STRUVITE结晶反应器的演示级。这种新的配置包括在混合室中含有的混合污泥的重力增稠剂的elutriation中,以将磷酸盐载荷降低到厌氧消化。结果表明,初级污泥溢出中可用的P比常规构型(1.88 vs.0.39gp / kg污泥处理)的近五倍近五倍(1.88 vs.0.39gp / kg污泥处理),并且厌氧消化器内的不受控制的P沉淀降低了43% 。关于进入WWTP的总P,可以通过与前一个传统配置中的9%相比,使用新的配置来恢复总P的19%。结晶厂的平均回收效率为86.9 0.4%,产生8.0 +/- 0.6kg / d的稳定矿回收率(0.67 +/- 0.04kg / m(3)加入结晶器))。具有新配置的潜在的斯特鲁瓦生产将是41kg / d(15t /叶)结晶,增稠剂上清液可以增加至约103kg / d(38t / y)处理所有p富集的流(增稠剂上清液和集成溪流)。本文表明,WWTPS可以有助于降低P稀缺,导致环境和经济效益。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production 》 |2019年第1期| 130-140| 共11页
  • 作者单位

    Univ Valencia Dept Engn Quim CALAGUA Unidad Mixta UV UPV Avinguda Univ S-N E-46100 Valencia Spain;

    Univ Valencia Dept Engn Quim CALAGUA Unidad Mixta UV UPV Avinguda Univ S-N E-46100 Valencia Spain;

    DAM Ave Benjamin Franklin 21 Parque Tecnol Valencia 46980 Spain;

    Univ Politecn Valencia Inst Univ Invest Engn Aigua & Medi Ambient IIAMA CALAGUA Unidad Mixta UV UPV Cami Vera S-N E-46022 Valencia Spain;

    Univ Claude Bernard Lyon 1 Univ Lyon CNRS LAGEP UMR 5007 43 Blvd 11 Novembre 1918 F-69100 Villeurbanne France;

    DAM Ave Benjamin Franklin 21 Parque Tecnol Valencia 46980 Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Crystallisation; Global phosphorus recovery; Sludge line management; Struvite; Urban WWTP;

    机译:结晶;全球磷恢复;污泥线管理;Struvite;城市WWTP;

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