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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >The effect of halophyte planting density on the efficiency of constructed wetlands for the treatment of wastewater from marine aquaculture
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The effect of halophyte planting density on the efficiency of constructed wetlands for the treatment of wastewater from marine aquaculture

机译:盐生植物种植密度对人工湿地处理海水养殖废水效率的影响。

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摘要

The low volume batches of highly-concentrated wastewater discharged from land-based marine recirculating aquaculture systems are ideally suited for treatment by halophyte planted constructed wetlands. To evaluate the role of plants and the effect of planting density on yield and performance in small-scale saline constructed wetlands (CWs), NH_4~+ + NO_3~- + NO_2~- =total dissolved inorganic nitrogen (TDIN) and dissolved inorganic phosphorus (DIP) were measured at regular intervals over 24 h periods. CWs were planted with the halophyte Salicornia europaea at high- and low-densities and were compared to the performance of unplanted controls. S. europaea plants were cropped regularly to assess potential commercial yield at the two densities. There was no significant effect of planting density on performance or crop yields and planted beds consistently outperformed the control beds removing 62.0 ± 34.6 mmol N m~(-2) d~(-1) (34-73% of influent TDIN) compared to 23.0±26.8mmolN m~(-2)d~(-1) (-1% to 41% of influent TDIN) by control beds. Results for DIP were less clear, significant removal occurred only once, with reduction of 18.3 ±5.0 mmol P m~(-2) d~(-1) by planted beds and 18.1 ± 2.6 mmol P m~(-2) d~(-1) by the unplanted controls. The results demonstrate the effectiveness of halophyte-planted CW in treatment of marine aquaculture wastewater.
机译:从陆基海洋循环水产养殖系统排放的小批量高浓度废水非常适合通过盐生植物种植人工湿地进行处理。在小型盐渍人工湿地(CWs)中,评估植物的作用以及种植密度对产量和性能的影响,NH_4〜+ + NO_3〜-+ NO_2〜-=总溶解无机氮(TDIN)和溶解无机磷(DIP)在24小时内定期进行测量。 CW分别以高密度和低密度种植了盐生植物Salicornia europaea,并与未种植对照的性能进行了比较。定期种植欧洲链球菌植物,以评估两种密度下的潜在商业产量。种植密度对性能或农作物产量没有显着影响,并且种植床始终优于对照床,与对照床相比,去除了62.0±34.6 mmol N m〜(-2)d〜(-1)(占流入TDIN的34-73%) 23.0±26.8mmolN m〜(-2)d〜(-1)(进水TDIN的-1%至41%)。 DIP的结果不太清楚,只有一次显着去除,种植床减少了18.3±5.0 mmol P m〜(-2)d〜(-1)和18.1±2.6 mmol P m〜(-2)d〜 (-1)由未植入的控件。结果证明了用盐生植物种植的化学废物处理海水养殖废水的有效性。

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