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首页> 外文期刊>Water Science and Technology >The role of plant uptake on the removal of organic matter and nutrients in subsurface flow constructed wetlands: a simulation study
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The role of plant uptake on the removal of organic matter and nutrients in subsurface flow constructed wetlands: a simulation study

机译:植物吸收在地下流动人工湿地中去除有机物和养分中的作用:模拟研究

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摘要

Plants in constructed wetlands have several functions related to the treatment processes, It is generally agreed that nutrient uptake is a minor factor in constructed wetlands treating wastewater compared to the loadings applied. For low loaded systems plant uptake can contribute a significant amount to nutrient removal. The contribution of plant uptake is simulated for different qualities of water to be treated using the multi-component reactive transport module CW2D. CW2D is able to describe the biochemical elimination and transformation processes for organic matter, nitrogen and phosphorus in subsurface flow constructed wetlands, The model for plant uptake implemented describes nutrient uptake coupled to water uptake. Literature values are used to calculate potential water and nutrient uptake rates. For a constructed wetland treating municipal wastewater a potential nutrient uptake of about 1.9% of the influent nitrogen and phosphorus load can be expected. For lower loaded systems the potential uptake is significantly higher, e.g. 46% of the nitrogen load for treatment of greywater. The potential uptake rates could only be simulated for high loaded systems i.e. constructed wetlands treating wastewater. For low loaded systems the nutrient concentrations in the liquid phase were too low to simulate the potential uptake rates using the implemented model for plant uptake.
机译:人工湿地中的植物具有与处理过程有关的若干功能。与所施加的负荷相比,通常认为养分吸收是人工湿地处理废水的次要因素。对于低负荷系统,植物的吸收可以为营养去除提供很大的帮助。使用多组分反应性运输模块CW2D,针对要处理的不同质量的水,模拟了植物吸收的贡献。 CW2D能够描述地下流动人工湿地中有机物,氮和磷的生物化学消除和转化过程。实施的植物吸收模型描述了养分吸收和水分吸收。文献值用于计算潜在的水和养分吸收率。对于处理市政污水的人工湿地,预计潜在的养分吸收量约为进水氮和磷负荷的1.9%。对于负载较低的系统,潜在的吸收明显更高,例如处理灰水的氮负荷的46%。可能仅针对高负荷系统(即处理废水的人工湿地)模拟潜在的吸收率。对于低负荷系统,液相中的养分浓度太低,无法使用已实现的植物吸收模型来模拟潜在的吸收率。

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