首页> 外文期刊>Environmental engineering and management journal >WASTEWATER TREATMENT IN A CONSTRUCTED WETLAND FOLLOWED BY AN OXIDATION POND IN A RURAL AREA OF CHINA
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WASTEWATER TREATMENT IN A CONSTRUCTED WETLAND FOLLOWED BY AN OXIDATION POND IN A RURAL AREA OF CHINA

机译:中国农村氧化塘污染后的人工湿地废水处理。

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The aim of this study was to examine the pollutant removal performance of a combined process using horizontal subsurface flow constructed wetland (HFCW) and an oxidation pond (OP) in the treatment of a decentralized domestic wastewater. Waters along the water flow and at different depths of the wetland substrate were sampled and analyzed during continuous operation. It was found that the HFCW-OP combined system presented good organic matter and phosphorus removal capacity. In the first year, COD and TP outputs were 30.0 and 0.5 mg/L, respectively. The concentrations of NH3-N and TN decreased notably from 6.3 and 16.5 mg/L to approximately 0.2 and 5.0 mg/L after 120 days of operation. This decrease was mainly achieved due to the formation of an anoxic environment in the wetland substrate. After 3 years of operation, however, the wetland showed different degrees of substrate clogging and pollutant accumulation. Although the removal of NH3-N and TN were 88% and 90%, respectively, COD removal decreased from 90% to 78%. By replacing the substrate and vegetation in the last two stages of the wetland and increasing the depth of the oxidation pond from 1.2 to 1.5 m could improve the COD and TP removal capacity of the HFCW-OP system effectively.
机译:这项研究的目的是研究使用水平地下流人工湿地(HFCW)和氧化池(OP)的组合工艺在处理分散式生活污水中的污染物去除性能。在连续运行过程中,对沿水流以及湿地基质不同深度的水进行了采样和分析。发现HFCW-OP组合系统具有良好的有机质和除磷能力。在第一年,COD和TP的产量分别为30.0和0.5 mg / L。运转120天后,NH3-N和TN的浓度从6.3和16.5 mg / L显着降低到约0.2和5.0 mg / L。这种减少主要是由于在湿地基质中形成了缺氧环境。但是,运行3年后,湿地显示出不同程度的底物堵塞和污染物积累。尽管NH3-N和TN的去除率分别为88%和90%,但COD去除率却从90%降至78%。通过替换湿地最后两个阶段的基质和植被并将氧化池的深度从1.2 m增加到1.5 m,可以有效提高HFCW-OP系统的COD和TP去除能力。

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