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Towards the circular economy - A pilot-scale membrane technology for the recovery of water and nutrients from secondary effluent

机译:朝着循环经济 - 一种试验型膜技术,用于从二级流出物中恢复水和营养素

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摘要

The concept of water reuse was proposed more than two decades ago in regions that suffered from water scarcity or relied on unpredictable water supplies. Since then, climate change, a rapidly growing global urban population, and environmental pollution have impacted sustainable water resources, driving a rise in demand for efficient wastewater reclamation technologies. According to the new Circular Economy Action Plan established by the EU, most activities that are undertaken as part of the wastewater treatment process should primarily concern the search for new technologies that use wastewater as a source of water and nutrients. This article proposes a new approach of secondary effluent (SE) management to recover the valuable components of wastewater for a variety of purposes, beginning with the water itself and followed by nutrients. With this objective in mind, we reclaimed SE in an integrated 3-stage pilot-scale membrane process (micro/ultrafiltration, nanofiltration and reverse osmosis). The effect of the process inlet pressure and flow configuration (cross-flow and dead-end filtration), as well as the type of membrane, on the efficiency of the process and water composition was investigated. In this study, microfiltration (MF), ultrafiltration (UF), and nanofiltration (NF) are not only pre-treatment processes reverse osmosis (RO) but also produce water for various purposes. This technology allowed the production of water for several types of applications. These uses include (a) industrial processes as a cooling medium, (b) urban non-potable applications (e.g., irrigation with reclaimed water and microelements), (c) potable water supplies, and (d) groundwater remediation. The classification of proper use was made based on standards, regulations, and the available literature. The conducted research demonstrated the versatility of the proposed technology with regard to water reclamation for various non-exclusive applications. Additionally, the cost-effectiveness of the implementation of the presented 3-stage-membrane technology was calculated.
机译:在20多年前,在遭受水资源稀缺或依赖不可预测的水供应的地区提出了水重用的概念。从那时起,气候变化,迅速增长的全球城市人口和环境污染影响了可持续的水资源,促进了高效废水填海科学的需求增长。根据欧盟设立的新循环经济行动计划,大多数活动作为废水处理过程的一部分所开展的活动应主要关注使用废水作为水和营养素来源的新技术。本文提出了一种新的污水(SE)管理的新方法,以恢复废水的宝贵部件,以各种目的从水本身开始,然后是营养素。凭借这一目标,我们在集成的3级先导型膜过程中重新选择了SE(微滤网,纳米滤乱和反渗透)。研究了工艺入口压力和流动构型(交叉流动和止回阀过滤)以及膜的效果,以及膜的效率,对方法和水组合物的效率进行了影响。在该研究中,微滤(MF),超滤(UF)和纳米滤膜(NF)不仅是预处理过程反渗透(RO),而且还为各种目的产生水。该技术允许生产的几种应用程序。这些用途包括(a)作为冷却介质的工业过程,(b)城市不饮用应用(例如,与再生水和微量元素的灌溉),(c)饮用水供应,(d)地下水补救措施。适当使用的分类是基于标准,法规和可用文献制定的。进行的研究表明,对于各种非专用应用,所提出的技术的多功能性。另外,计算了所呈现的3级膜技术实施的成本效益。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|148266.1-148266.11|共11页
  • 作者单位

    Department of Process Engineering and Technology of Polymer and Carbon Materials Faculty of Chemistry Wroclaw University of Science and Technology Norwida 4/650-373 Wroclaw Poland;

    Department of Process Engineering and Technology of Polymer and Carbon Materials Faculty of Chemistry Wroclaw University of Science and Technology Norwida 4/650-373 Wroclaw Poland;

    Department of Process Engineering and Technology of Polymer and Carbon Materials Faculty of Chemistry Wroclaw University of Science and Technology Norwida 4/650-373 Wroclaw Poland Department of Water and Wastewater Treatment Technology Faculty of Environmental Engineering Wroclaw University of Science and Technology Norwida 4/6 50-373 Wroclaw Poland;

    Department of Water and Wastewater Treatment Technology Faculty of Environmental Engineering Wroclaw University of Science and Technology Norwida 4/6 50-373 Wroclaw Poland Center of New Technologies Municipal Water and Sewage Company Na Grobli 19 50-421 Wroclaw Poland;

    Department of Process Engineering and Technology of Polymer and Carbon Materials Faculty of Chemistry Wroclaw University of Science and Technology Norwida 4/650-373 Wroclaw Poland;

    Department of Process Engineering and Technology of Polymer and Carbon Materials Faculty of Chemistry Wroclaw University of Science and Technology Norwida 4/650-373 Wroclaw Poland;

    Department of Process Engineering and Technology of Polymer and Carbon Materials Faculty of Chemistry Wroclaw University of Science and Technology Norwida 4/650-373 Wroclaw Poland;

    Center of New Technologies Municipal Water and Sewage Company Na Grobli 19 50-421 Wroclaw Poland;

    Department of Process Engineering and Technology of Polymer and Carbon Materials Faculty of Chemistry Wroclaw University of Science and Technology Norwida 4/650-373 Wroclaw Poland;

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

    Membrane separation; Cooling water; Irrigation; Groundwater; Water scarcity; Hydrological drought;

    机译:膜分离;冷却水;灌溉;地下水;水资源短缺;水文干旱;

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