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Plant diversity improves the effluent quality and stability of floating constructed wetlands under increased ammoniumitrate ratio in influent

机译:植物多样性提高了流水下铵/硝酸盐比下浮动构建湿地的流出质量和稳定性

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摘要

The major targets of constructed wetlands (CWs) during wastewater treatment include achieving high-quality effluent and maintaining stable effluent quality. Plant species diversity can increase nitrogen (N) removal efficiency and improve effluent quality by decreasing the effluent N concentrations, including nitrate (NO_3~--N), ammonium (NH_4~+-N) and total inorganic nitrogen (TIN) concentrations in CWs. However, the effect of plant diversity on the stability of effluent quality in response to perturbation in the form of an increased NH_4~+/NO_3~-ratio in influent has not been studied. This study conducted a microcosm experiment and assembled four plant species richness levels (1, 2, 3 and 4) and 15 species compositions by using 90 simulated CW microcosms to investigate the effect of plant diversity on the effluent N concentrations and their stability with an increase in the influent NH_4~+/NO_3~- ratio from 0:100 to 33:67 in the later stage of the experiment. The results showed that (1) plant species richness maintained a positive effect on effluent quality under an increased influent NH_4~+/NO_3~-ratio; (2) high species richness enhanced the stability of effluent water quality; (3) the presence of Phragmites australis in the community decreased the effluent TIN concentration and improved its stability under perturbation; and (4) the presence of Typha latifolia had a positive effect on N removal efficiency under perturbation. The establishment of communities with high plant species richness and proper species (such as P. australis) could simultaneously improve the effluent quality and stability in CWs for treating wastewater with increased NHj/ NO_3~- ratio.
机译:废水处理期间建造湿地(CWS)的主要目标包括实现高质量的流出物和保持稳定的流出质量。植物物种多样性可以通过降低硝酸盐(NO_3〜--n),CWS中的硝酸盐(NO_3〜-N),铵(NH_4〜+ -N)和总无机氮(锡)浓度降低氮气(N)去除效率并通过降低CWS中的总无机氮(锡)浓度来增加氮气(N)去除效率并通过降低污水质量。然而,尚未研究植物多样性对流出物质扰动扰动质量稳定性的影响。本研究通过使用90个模拟CW微观,进行了微观实验,并组装了四种植物物种丰富水平(1,2,3和4)和15种组合物,以研究植物多样性对流出物N浓度的影响及其稳定性在实验后期阶段的0:100至33:67的影响下的NH_4〜+ / NO_3〜 - 比率。结果表明,(1)植物物种丰富性对流水影响的污水质量保持阳性作用NH_4〜+ / NO_3〜-RATIO; (2)高物种丰富性增强了流出水质的稳定性; (3)在社区中芦苇澳大利亚人的存在降低了污水锡浓度,并在扰动下改善了其稳定性; (4)Typha Latifolia的存在对扰动下的N去除效率具有积极影响。建立具有高植物物种丰富性和适当的物种(如P. Australis)的社区可以同时提高CWS的废水质量和稳定性,用于治疗NHJ / NO_3〜比率增加。

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  • 来源
    《Journal of Environmental Management》 |2020年第jul15期|110607.1-110607.9|共9页
  • 作者单位

    College of Life Sciences Zhejiang University 866 Yuhangtang Road Hangzhou 310058 PR China;

    College of Life Sciences Zhejiang University 866 Yuhangtang Road Hangzhou 310058 PR China;

    College of Life Sciences Zhejiang University 866 Yuhangtang Road Hangzhou 310058 PR China;

    College of Life Sciences Zhejiang University 866 Yuhangtang Road Hangzhou 310058 PR China School of History Geography and Tourism Shangrao Normal University 401 Zhiming Road Shangrao 334001 PR China;

    College of Life Sciences Zhejiang University 866 Yuhangtang Road Hangzhou 310058 PR China;

    College of Life Sciences Zhejiang University 866 Yuhangtang Road Hangzhou 310058 PR China;

    College of Life Sciences Zhejiang University 866 Yuhangtang Road Hangzhou 310058 PR China;

    College of Computer Science Zhejiang University of Technology Hangzhou 310023 PR China;

    Department of Renewable Resource University of Alberta Edmonton T6G 2E3 Alberta Canada;

    College of Life Sciences Zhejiang University 866 Yuhangtang Road Hangzhou 310058 PR China;

    College of Life Sciences Zhejiang University 866 Yuhangtang Road Hangzhou 310058 PR China;

  • 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

    Species richness; Species identity; Effluent N concentrations; Nitrogen removal; Ecosystem functioning;

    机译:物种丰富;物种身份;流出物n浓度;氮气去除;生态系统运行;

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