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Operational Performances and Enzymatic Activities for Eutrophic Water Treatment by Vertical-Flow and Horizontal-Flow Constructed Wetlands

机译:通过垂直流动和水平流动构造的湿地进行操作性能和酶促水处理的酶促活性

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摘要

In this study, pilot-scale vertical-flow constructed wetland (VFCW) and horizontal-flow constructed wetland (HFCW) were constructed to treat eutrophic water, and dissolved oxygen (DO) distributions, decontamination performances and key enzymes activities were compared under different influent loads. The influent load increase caused reductions of DO levels and removal efficiencies of chemical oxygen demand (COD), total nitrogen (TN), NH4+−N and organic nitrogen, but it had no remarkable effect on the removal of NO3−−N and total phosphorus (TP). The interior DO concentrations of VFCW were higher than those of HFCW, indicating a vertical hydraulic flow pattern was more conducive to atmospheric reoxygenation. The VFCW and HFCW ecosystems possessed comparable removal capacities for TN, NO3−−N and TP. VFCW had a remarkable superiority for COD and organic nitrogen degradation, but its effluent NH4+−N concentration was higher, indicating the NH4+−N produced from organic nitrogen degradation was not effectively further removed in the VFCW system. The activities of protease, urease and phosphatase declined with the increasing depth of substrate layers, and they were positively correlated with DO concentrations. The enzymatic activities of VFCW were significantly higher than that of HFCW in the upper layers. Taken together, VFCW and HFCW presented a certain difference in operational properties due to the different hydraulic flow patterns.
机译:在这项研究中,中试规模的垂直流人工湿地(VFCW)和水平流人工湿地(HFCW)构建治疗富营养化水和溶解氧(DO)的分布,去污性能和关键酶活动不同进水下相比负载。进水负荷增大造成的DO水平的减少和化学需氧量去除效率(COD),总氮(TN),NH4 + -N和有机氮,但对除去NO3没有显着的效果 - N和总磷(TP)。 VFCW的内部DO浓度比HFCW高,指示垂直液压流模式是更有利于大气复氧。的VFCW和HFCW生态系统具有用于TN,NO3可比去除能力 - N和TP。 VFCW有用于COD和有机氮降解的显着的优越性,但其流出物NH4 + -N浓度越高,表明NH4 + -N从有机氮降解产生不能有效地在VFCW系统进一步除去。蛋白酶,脲酶和磷酸酶活性与底物的层的深度的增加下降,并且它们均与DO浓度相关。 VFCW的酶活性比在上层那HFCW的显著更高。两者合计,VFCW和HFCW呈现在操作特性有一定差异是由于不同的液压流动模式。

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