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Comparative Nutrient Remediation by Monoculture and Mixed Species Plantings within Floating Treatment Wetlands

机译:通过单一栽培和混合物种种植在浮动处理湿地内的比较营养补救

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摘要

Irrigation return water from container plant nurseries often contains elevated levels of nitrogen (N) and phosphorus (P). Floating treatment wetlands (FTWs) are one solution for removing nutrients from irrigation return flow. This study assessed how FTW planting strategy (monoculture vs mixed planting) influenced removal of N and P. Tanks containing FTWs received water with ~22.3 N and 3.12 mg·L~(-1) P water-soluble fertilizer every 7 days for two, 8-week experiments. Experimental treatments were a control (open water); monoculture plantings (Iris ensata 'Rising Sun', Canna ×generalis 'Firebird', Agrostis alba, Carex strida, or Panicum virgatum); or mixed plantings [2 mixtures: partial (monocots only) or a complete mixture of all plants]. For FTWs established in all treatments (except control), N and P removal from solution was additive, with a similar mass of N and P removed. However, when assessing nutrient uptake within plant tissues in FTWs, Panicum virgatum performed better (absorbed more N) within mixtures, a possible synergistic effect, while Iris ensata 'Rising Sun' performed poorly (fixed less N) within the complete mixture, a possible antagonist effect. Nutrient assimilation within plant tissues did not correlate with overall remediation performance for monocultures or mixtures, as tissue accumulation varied by nutrient and mixture.
机译:来自集装箱植物苗圃的灌溉返回水通常含有升高的氮气(n)和磷(p)。浮动处理湿地(FTWS)是一种从灌溉回流流中除去营养物的一种溶液。本研究评估了FTW种植策略(单一种质VS混合种植)的影响,含有FTWS的N和P.罐中的坦克,每7天每7天含有〜22.3 n和3.12 mg·l〜(-1)P水溶性肥料。 8周的实验。实验治疗是一种对照(露天水);单一型种植园(Iris Ensata's Rising Sun',Canna×Generalis'Firebird',Agrostis Alba,Carex Strida或Panicum Virgatum);或混合种植[2混合物:部分(仅限单粒子)或所有植物的完整混合物]。对于在所有治疗中建立的FTW(对照),从溶液中除去N和P是添加剂的,并除去类似的N和P的质量。但是,在评估FTWS的植物组织内的营养吸收时,Panicum VIRGATUM在混合物中表现更好(吸收更多N),这是一种可能的协同效应,而虹膜塞纳塔上升的太阳在完整混合物中表现不佳(固定不足)拮抗剂效果。植物组织内的营养增氧与单苗圃或混合物的整体修复性能没有相关,因为营养素和混合物变化的组织积累。

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  • 来源
    《Environmental Science & Technology》 |2020年第14期|8710-8718|共9页
  • 作者单位

    Water Treatment Technology Laboratory South Carolina Water Resources Center and Department of Plant and Environmental Sciences E-143 Poole Agricultural Center Clemson University Pendleton South Carolina 29670 United States;

    Water Treatment Technology Laboratory South Carolina Water Resources Center Clemson University Pendleton South Carolina 29670 United States;

    School of Mathematical and Statistical Sciences Clemson University Clemson South Carolina 29634 United States;

    Water Treatment Technology Laboratory South Carolina Water Resources Center Clemson University Pendleton South Carolina 29670 United States;

    USDA-ARS Horticultural Research Laboratory Fort Pierce Florida 34945 United States;

    Water Treatment Technology Laboratory South Carolina Water Resources Center and Department of Plant and Environmental Sciences E-143 Poole Agricultural Center Clemson University Pendleton South Carolina 29670 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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