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Modeling nitrogen removal in a constructed wetland treatment system

机译:在人工湿地处理系统中模拟脱氮

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A constructed wetland treatment system (CWTS) has been adopted for removal of nitrogen from wastewater. The design methodologies developed for CWTS in previous studies were based on thumb rules, and first order/Monod type kinetics models. The use of kinetic models is system/environment specific. There is scope to assess the potential of other reaction kinetic models for their usefulness and applicability. In the present study, lumped and distributed parameter models incorporated with various reactions kinetic were developed. The various processes were incorporated in distributed parameter model for nitrogen transformations. Laboratory/pilot-scale field experiments were carried out and used for verification and application of models developed. The reaction rate parameters were estimated using non-linear least square analysis. The results showed that the conditions within CWTS can be simulated by plug flow. The plant uptake rate was found to be higher than denitrification for nitrate removal. Nitrification and plant uptake are equally dominant for the removal of ammonia nitrogen. The relative contributions by various processes for nitrogen removal can be established using the distributed parameter model. The developed simulation model can be used as a CWTS planning and design tool for the effective control and treatment of nitrogen induced pollution.
机译:已采用人工湿地处理系统(CWTS)去除废水中的氮。在先前的研究中为CWTS开发的设计方法是基于经验法则和一阶/莫诺德型动力学模型。动力学模型的使用是系统/环境特定的。有可能评估其有效性和适用性的其他反应动力学模型的潜力。在本研究中,开发了集总和分布参数模型与各种反应动力学。将各种过程并入用于氮转化的分布式参数模型中。进行了实验室/中试规模的现场实验,并将其用于验证和应用开发的模型。使用非线性最小二乘分析估计反应速率参数。结果表明,通过塞流可以模拟CWTS中的条件。发现去除硝酸盐的植物吸收速率高于反硝化。硝化作用和植物吸收对于去除氨氮同样重要。可以使用分布式参数模型建立各种脱氮过程的相对贡献。所开发的仿真模型可以用作CWTS规划和设计工具,以有效控制和处理氮引起的污染。

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