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Leachability and plant-availability of phosphorus in post-sorption wastewater filters fortified with biochar

机译:用生物炭强化吸附废水过滤器中磷的可浸出性和植物可用性

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摘要

Sand and gravel are widely applied for filtering pre- or primary-treated wastewater in small-scale wastewater treatment (SWT) systems. However, ecological materials continue to attract increasing interest in use as retrofits for achieving better performance in removing dissolved contaminants and recovering nutrients from wastewater. In this study, we assessed the plant availability and leachability of phosphorus (P) from sand (Sa) and gas concrete (GC) media previously fortified with biochar (BC) and used for phosphorus (P) removal in laboratory-scale packed bed reactors and field-scale constructed filter beds. Batch and leaching experiments were conducted, with distilled water and ammonium lactate (AL) solutions (1:20 solid?liquid (w/v) ratio) applied as extractants. In the findings, reference (Sa) and fortified (Sa-BC) sand filters leached 11.2 and 20.5?mg?P?kg(?1) respectively, to percolating water while the P seemed less likely to leach from GC systems. Extraction with AL showed that P retained in GC was plant-available and that GC could release up to 90?mg?kg(?1) of the bound mass. These findings highlight the need to evaluate risks of nutrient leaching from filter media for SWT systems especially where groundwater and surface water are final recipients of such effluents. For greater sustainability of use of the media, the weakly bound P in media such as Sa and BC and strongly bound in media such as GC types of materials may be recovered by recycling the spent material to agriculture. However, this may require re-design of the treatment system especially with respect to particle size to make recycling technically feasible.
机译:砂和砾石被广泛应用于过滤小规模废水处理(SWT)系统中的预处理或初级处理的废水。然而,生态材料继续吸引越来越多的利益,因为用于在除去溶解的污染物和从废水中回收营养物质方面的改造以实现更好的性能。在这项研究中,我们评估了先前强化Biochar(BC)的砂(SA)和气体混凝土(GC)培养基的磷(P)的植物可用性和可浸出性,并用于实验室填充床反应器中的磷(P)去除和现场刻度构造过滤床。进行分批和浸出实验,用蒸馏水和乳酸铵(Al)溶液(1:20固体α液(W / V)的比例)作为萃取剂施用。在研究结果中,参考(SA)和强化(SA-BC)砂滤器分别浸出11.2和20.5?mg?p≤kg(α1),而P 2 kg(α1),而P似乎不太可能从GC系统浸出。用AR提取表明,保留在GC中的P是植物可用的,并且GC可以释放最多90毫克的粘合质量的kg(α1)。这些发现突出了评估SWT系统的过滤介质的营养浸出风险的必要性,特别是在地下水和地表水是这种流出物的最终接受者。为了更高的使用培养基的可持续性,通过将废料回收到农业,可以回收诸如SA和BC等培养基中的培养基中的弱写的P和培养基中的弱写效应。然而,这可能需要重新设计治疗系统,特别是关于粒度,以便在技术上可行地进行回收。

著录项

  • 来源
    《Environmental Technology》 |2019年第28期|3641-3651|共11页
  • 作者单位

    KTH Royal Inst Technol Div Water & Environm Engn Teknikringen 10B SE-10044 Stockholm Sweden;

    KTH Royal Inst Technol Div Water & Environm Engn Teknikringen 10B SE-10044 Stockholm Sweden;

    KTH Royal Inst Technol Div Water & Environm Engn Teknikringen 10B SE-10044 Stockholm Sweden;

    KTH Royal Inst Technol Div Water & Environm Engn Teknikringen 10B SE-10044 Stockholm Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reactive filter media; phosphorus leaching; biochar; gas concrete; soil availability of phosphorus;

    机译:无功过滤介质;磷浸出;生物炭;气体混凝土;磷的土壤可用性;
  • 入库时间 2022-08-18 21:49:23

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