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Computational modeling of wastewater land application treatment systems to determine strategies to improve carbon and nitrogen removal

机译:废水土地应用处理系统的计算模型,以确定提高碳和氮去除率的策略

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Land application of domestic and food processing wastewater is used due to its low cost, energy use, and maintenance. Design procedures are generally based on empirical relationships that may not account for critical site and waste-specific conditions. A mathematical model was utilized to simulate the complexity of wastewater land application. Multiple scenarios were run to determine system performance as measured by chemical oxygen demand (COD) and the nitrification/denitrification process. The modeling results showed that COD and nitrification occurred within the first 15.4cm of a sandy loam soil. Increasing the dosing frequency slightly reduced the COD effluent concentration. Complete denitrification does not occur in a typical land application wastewater treatment system. In a domestic wastewater land application system, up to 32% of nitrate can be removed by increasing the dosing frequency and providing more organic carbon. In a food processing wastewater land application system, up to 56% of nitrate can be removed by increasing the dosing frequency and hydraulic and organic loadings. HYDRUS CW2D modeling is a valuable design tool to simulate multiple operation strategies and predict carbon degradation, nitrification, and denitrification. The model result can provide operational strategies to maximize the treatment while minimizing environmental impacts.
机译:由于其成本低,能源消耗和维护成本高,因此需要在土地上使用生活和食品加工废水。设计程序通常基于经验关系,而这些经验关系可能无法说明关键现场和特定于废物的条件。利用数学模型来模拟废水土地利用的复杂性。运行了多种方案来确定通过化学需氧量(COD)和硝化/反硝化过程测得的系统性能。模拟结果表明,COD和硝化作用发生在沙壤土的前15.4cm之内。加药频率的增加会稍微降低COD废水的浓度。在典型的土地应用废水处理系统中不会发生完全脱硝。在家庭污水土地应用系统中,可以通过增加加料频率并提供更多的有机碳来去除多达32%的硝酸盐。在食品加工废水土地应用系统中,可通过增加加料频率以及液压和有机负荷来去除多达56%的硝酸盐。 HYDRUS CW2D建模是一种有价值的设计工具,可以模拟多种操作策略并预测碳的降解,硝化和反硝化作用。模型结果可提供可最大化处理效果,同时将对环境的影响最小化的操作策略。

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