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Domestic wastewater treatment using batch-fed constructed wetland and predictive model development for NH3-N removal

机译:使用分批饲喂的人工湿地处理生活污水及NH3-N去除预测模型的开发

摘要

In this study, the performance of a pilot-scale batch-fed constructed wetland in treating domestic wastewater from small community was tested. The principal of the system capitalizes on the pollutant removal mechanisms of the soil-plant-microbial interactions of constructed wetlands, and the system operation was integrated with the rhythmical movement of wastewater and air that similar to the operation of conventional sequencing batch reactor. Based on the hydraulic loading of 0.91 m3/m2/day and the daily maximum contact time of 18 h, the system could achieve around 60% removal efficiency for carbonaceous matters. The removals of ammonia nitrogen and phosphorus were about 50 and 40%, respectively, while the removal of total suspended solids was approaching 80%. Mathematical models were developed to describe ammonia nitrogen degradation in the batch-fed constructed wetland. Three analytical approaches including multivariate regression, first-order kinetics and mass balance analysis were done. Prediction model was formulated to predict the system removal efficiency of ammonia nitrogen.
机译:在这项研究中,测试了中试规模的人工饲养湿地在处理小社区生活污水中的性能。该系统的原理利用了人工湿地中土壤-植物-微生物相互作用的污染物去除机理,并且该系统的操作与废水和空气的有规律的运动相结合,类似于常规的顺序批处理反应器的操作。基于0.91立方米/平方米/天的水力负荷和18小时的每日最大接触时间,该系统可对碳质物质实现约60%的去除效率。氨氮和磷的去除率分别约为50%和40%,而总悬浮固体的去除率则接近80%。建立了数学模型来描述分批饲喂的人工湿地中氨氮的降解。进行了包括多元回归,一阶动力学和质量平衡分析在内的三种分析方法。建立了预测模型以预测氨氮的系统去除率。

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