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Nutrient removal mechanisms in constructed wetlands and sustainable water management

机译:人工湿地中的营养去除机制与可持续水管理

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Constructed wetland systems are used o treat domestic and industrial wastewater and agricultural runoff. In this field study the influence of hydraulic loading, retention time, water column depth and phosphorus (P) concentrations of influent wastewater on P and nitrogen (N) removal was examined in experimental constructed wetland systems. Five constructed wetlands with a surface area of 150 m~2, were developed in the field. Results showed that P concentrations of water from outlets of all five systems decreased (from as low as 11% decrease for the system which received wastewater with average P concentration of 8.2 mg P L~(-1) to as high as 48.9% decrease for the system which received wastewater with average P concentration of 3.58 mg P L~(-1)) compared to the influent water. The N concentrations in the outlet water were also decreased in all five systems (from as low as 26.3% decrease to as high as 77.5% decrease) compared to the influent water. The total P and N in the wetland sediment increased in the first year in all five systems but were unchanged at the end of the second year. The study showed that low hydraulic loading and greater retention times positively enhanced removal of P and N from wastewater in constructed wetland systems.
机译:人工湿地系统可用于处理家庭和工业废水以及农业径流。在该田间研究中,在人工建造的湿地系统中研究了水力负荷,停留时间,水柱深度和进水废水中磷(P)浓度对磷和氮(N)去除的影响。在田间开发了五个人工湿地,表面积为150 m〜2。结果表明,所有五个系统的出水口的P浓度均下降(从接收平均P浓度为8.2 mg PL〜(-1)的废水的系统中降低至11%到该系统中的最高48.9%降低)。该系统接收的废水中P的平均浓度为3.58 mg PL((-1))。与进水相比,在所有五个系统中,出水中的氮浓度也有所降低(从低至26.3%降低至高至77.5%)。在所有五个系统中,湿地沉积物中的总磷和氮在第一年都增加了,但是在第二年末没有变化。研究表明,较低的水力负荷和更长的保留时间肯定会增强人工湿地系统中废水中磷和氮的去除。

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