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A constructed wetland system with aquatic macrophytes for cleaning contaminated runoff/storm water from urban area in Florida

机译:一种由水生植物制造的湿地系统,用于清洁佛罗里达城市地区的污染污染径流/雨水

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摘要

A community of aquatic macrophytes has an important role in reducing nutrient load and organic and inorganic contaminants in storm/runoff water. However, minimal information is available regarding the efficiency of constructed wetlands for cleaning runoff water from urban areas, especially in the tropical and subtropical regions. This study investigated the effectiveness of constructed wetland integrated with aquatic macrophytes for removal of chemical and microbial contaminants in the storm/runoff water from the urban areas. Water samples were monthly collected in the constructed wetland from the inlet of storm/runoff water, middle and outlet of discharge, and analyzed for physical and chemical properties, concentrations of nutrients, metals, and fecal conform (FC) during the period of November, 2016 to April, 2018 in St. Lucie county, Florida, USA. The dominant plant species in the constructed wetland included cattail (Typha latifolia), waterthyme (Hydrilla ver-ticillata) and water hyacinth (Eichhornia crassipes), and periphyton filamentous algae (Spirogyra). The improvement of pH and electrical conductivity (EC) was not obvious, but the concentration of total suspended solids was significantly reduced. This system was effective in the removal of fecal coliform (by 68%) and particulate phosphorus (P, 72%), followed by total P (42%) and N (35%). Concentrations of metallic pollutants including cadmium (Cd), lead (Pb), chromium (Cr), and copper (Cu) were mostly below the detection limit (<1 ppb) except for zinc (Zn), of which concentration was reduced by 23%. The removal of FC was consistently effective all the year round, whereas the removal of total N, P and particulate-P was effective in spring and summer, and less in autumn and winter. These results indicate that constructed wetland with a natural aquatic plant community can effectively reduce the loads of nutrients, metals, and fecal coliforms in water column. Regular harvest of aquatic macrophytes communities and collecting litters may further improve the system efficiency for cleaning storm water from urban areas.
机译:水生宏观物质的群落在减少风暴/径流水中的营养载荷和有机和无机污染物方面具有重要作用。然而,有关由城市地区清洁径流水的构造湿地的效率的最小信息,特别是在热带和亚热带地区。本研究调查了构造湿地与水生型宏观物质的有效性,以去除城市风暴/径流水中的化学和微生物污染物。在11月期间,从暴风雨/径流水,中间和出口的入口处收集水样在由风暴/径流水,中间和出口的入口处收集的湿地收集,并分析了11月期间的物理和化学性质,营养素,金属浓度和粪便(FC)。 2016年至2018年4月,2018年在圣卢西县,佛罗里达,美国。构造的湿地中的主要植物种类包括Cattail(Typha Latifolia),水枣(Hydrilla Ver-TiCillata)和水葫芦(Eichhornia Crassipes)和Periphyton丝状藻(Spirogyra)。 pH和电导率(EC)的改善不明显,但总悬浮固体的浓度显着降低。该系统在除去粪便大肠菌菌(Po至68%)和颗粒状磷(P,72%)中有效,然后进行总P(42%)和N(35%)。包括镉(Cd),铅(Pb),铬(Cr)和铜(Cu)在内的金属污染物的浓度大部分低于除锌(Zn)之外的检测限(<1ppb),其中浓度降低23 %。除去Fc的去除始终如一的全年效果,而在春季和夏季,秋季和冬季的颗粒均有效。这些结果表明,具有天然水生植物群落的湿地可以有效降低水柱中的营养,金属和粪便大肠的负荷。常规收获水生型宏观物质社区和收集垃圾量可能进一步提高从城市地区清洁风暴水的系统效率。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第15期|111794.1-111794.9|共9页
  • 作者单位

    University of Florida Institute of Food and Agricultural Sciences Department of Soil and Water Sciences/Indian River Research and Education Center Fort Pierce FL 34945 USA School of Applied Meteorology Nanjing University of Information Science and Technology Nanjing 210044 China;

    University of Florida Institute of Food and Agricultural Sciences Department of Soil and Water Sciences/Indian River Research and Education Center Fort Pierce FL 34945 USA;

    University of Florida Institute of Food and Agricultural Sciences Department of Soil and Water Sciences/Indian River Research and Education Center Fort Pierce FL 34945 USA;

    University of Florida Institute of Food and Agricultural Sciences Department of Soil and Water Sciences/Indian River Research and Education Center Fort Pierce FL 34945 USA;

    University of Florida Institute of Food and Agricultural Sciences Department of Soil and Water Sciences/Indian River Research and Education Center Fort Pierce FL 34945 USA;

    University of Florida Institute of Food and Agricultural Sciences Department of Soil and Water Sciences/Indian River Research and Education Center Fort Pierce FL 34945 USA;

    University of Florida Institute of Food and Agricultural Sciences Department of Soil and Water Sciences/Indian River Research and Education Center Fort Pierce FL 34945 USA;

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

    Aquatic plant; Constructed wetland; Total N; Total P; Heavy metals; Fecal coliform;

    机译:水生植物;建造湿地;总n;总P;重金属;粪便大角;

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