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An investigation into the relationship between water quality volume (design storage volume) and stormwater wetland performance

机译:水质量(设计蓄水量)与雨水湿地性能之间关系的调查

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An investigation on free water surface wetland, which has an area of 0.23 ha and is employed to control the non-point source pollution from a watershed of 7.4 ha, was carried out to examine how the WQv(r) (the ratio of stormwater inflow volume to water quality volume (WQv)) affects the wetland treatment performance. As stormwater went through the wetland, TSS (total suspended solids), TCOD (total chemical oxygen demand), TN (total nitrogen) and TP (total phosphorus) were reduced by 85%, 57%, 6% and 68%, on average, respectively. Increase in the WQv(r) resulted in a decrease in the reduction efficiencies of TSS, TCOD and TP, but a slight increase in TN removal. WQv was identified as a useful parameter for the design of stormwater wetlands, as this volumetric design approach overcomes the variation in flow rate and pollutant concentrations with respect to time and rainfall conditions. However, the design goal of 80% TSS reduction was not accomplished as inflow water volume equal to designed WQv. On the other hand, it was found that TCOD and TP reduction could also be considered as wetland design goals together with TSS. However, TN reduction did not show any significant relationship with the WQv.
机译:对面积为0.23公顷并用于控制7.4公顷流域的面源污染的自由水表面湿地进行了调查,以研究WQv(r)(雨水流入量的比率)体积到水质体积(WQv)会影响湿地处理性能。随着雨水穿过湿地,TSS(总悬浮固体),TCOD(总化学需氧量),TN(总氮)和TP(总磷)平均减少了85%,57%,6%和68% , 分别。 WQv(r)的增加导致TSS,TCOD和TP降低效率的降低,但TN去除率略有提高。 WQv被认为是设计雨水湿地的有用参数,因为这种容积设计方法克服了流速和污染物浓度随时间和降雨条件的变化。但是,由于流入水量等于设计的水质当量,因此无法实现将TSS降低80%的设计目标。另一方面,发现减少TCOD和TP也可以与TSS一起视为湿地设计目标。但是,TN减少与WQv没有明显关系。

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