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Newly developed membrane contactor-based N and P recovery process: Pilot-scale field experiments and cost analysis

机译:基于新开发的膜接触器N和P恢复过程:导频规模场实验和成本分析

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摘要

In this study, a newly developed nitrogen (N) and phosphorus (P) recovery process using a membrane contactor termed NPHarvest was tested with different liquid waste streams in large-scale trials. Ammonia was captured in ammonium sulfate form using a hydrophobic membrane, while phosphorus was precipitated as sludge using alkali precipitation and coagulation processes. The tested streams were selected to cover the potential liquid waste streams for nitrogen recovery and included two different mesophilic digester reject waters, landfill leachate, and separately collected urine. The NPHarvest pilot was tested with hydraulic loads in the range of 12–133 L/h. Nitrogen recovery efficiency reached a maximum of 92.5% with the reject water of mesophilic digester and a maximum ammonia flux of 481.1 mg/L.h was obtained with a urine stream. A mass transfer coefficient was calculated for the four tested wastewater streams using two different approaches, resulting in two value ranges in the order of 10−3 and 10−7 m/s. It was found that the mass transfer coefficient decreased with increase in the initial nitrogen concentration. The recovery of phosphorus varied between 79% and 97%. The quality of ammonium sulfate was evaluated by employing comprehensive tests that included vegetative cells and coliphages, harmful metals, and organic micropollutant measurements. These measurements confirmed that ammonium sulfate meets the Finnish legislation requirements for agricultural use. The use of a diluted acid wash was proven to be sufficient for maintaining membrane surface properties and was confirmed by the observed insignificant loss of hydrophobicity and the mild development of fouling. Finally, the competitiveness of NPHarvest compared to existing processes was confirmed through a detailed cost analysis.
机译:在该研究中,用大规模试验的不同液体废物流测试使用膜接触器的新开发的氮气(N)和磷(P)回收过程。使用疏水膜以硫酸铵形式捕获氨,而使用碱沉淀和凝血方法,磷作为污泥沉淀。选择测试的物流以覆盖用于氮气回收的潜在液体废物流,包括两种不同的嗜合脂蛋白拒绝水,垃圾填埋场渗滤液和单独收集的尿液。用液压载荷在12-133升/小时的范围内测试纳巴烃飞行员。氮气回收效率达到最多92.5%,乳液蒸煮器的废水和481.1mg / L.H的最大氨通量用尿液流获得。使用两种不同方法的四个测试的废水流计算传质系数,从而导致10-3和10-7 m / s的两个值范围。发现传质系数随着初始氮浓度的增加而降低。磷的回收率变化在79%和97%之间。通过采用包括营养细胞和COLIPHAGE,有害金属和有机微量舒适测量的综合测试来评价硫酸铵的质量。这些测量证实,硫酸铵符合农业使用的芬兰立法要求。已证明使用稀释的酸性洗涤足以保持膜表面性质,并通过观察到的疏水性丧失和污垢的轻度发展证实。最后,通过详细的成本分析确认了与现有流程相比纳米养的竞争力。

著录项

  • 来源
    《Journal of Cleaner Production》 |2021年第25期|125288.1-125288.16|共16页
  • 作者单位

    Water and Environmental Engineering Research Group Department of Built Environment Aalto University P.O. Box 15200 Aalto FI-00076 Espoo Finland;

    Water and Environmental Engineering Research Group Department of Built Environment Aalto University P.O. Box 15200 Aalto FI-00076 Espoo Finland;

    Water and Environmental Engineering Research Group Department of Built Environment Aalto University P.O. Box 15200 Aalto FI-00076 Espoo Finland;

    Water and Environmental Engineering Research Group Department of Built Environment Aalto University P.O. Box 15200 Aalto FI-00076 Espoo Finland|Department of Environment Land and Infrastructure Engineering Politecnico di Torino Corso Duca Degli Abruzzi 24 10129 Torino Italy;

    Porvoo Water Mestarintie 2 06150 Porvoo Finland;

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

    Cost analysis; Membrane contactor; Micropollutants; Nitrogen; NPHarvest; Phosphorous;

    机译:成本分析;膜接触器;微污染物;氮;qupharvest;磷;

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