首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Novel insights on the response of horizontal flow constructed wetlands to sudden changes of influent organic load: A modeling study
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Novel insights on the response of horizontal flow constructed wetlands to sudden changes of influent organic load: A modeling study

机译:关于水平流人工湿地对入水有机负荷突变的响应的新颖见解:模型研究

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Horizontal flow constructed wetlands (HF CWs) have shown a good efficiency in the treatment of highly variable influent loads (e.g. touristic facilities, stormwater). However, recent studies have highlighted the possibilities of HF CW failure in treatment of high sudden loads. In order to limit excessive overestimation of the required surface area to face sudden loads, a more indepth understanding of HF response to time-variable loads is needed. With this objective in mind, the response of HF CWs to time-variable loads is investigated using a modeling approach. A validated process-based numerical model of a laboratory HF CW (1.1 m x 0.76 m x 0.3 m) is used to study the response to both hourly and daily sudden loads, according to the specifications for the daily load pattern given in the European Standards for testing small wastewater treatment plants. During nominal load, the system was loaded with 101 of artificial wastewater per day with 954 mg(COD)/l and 21 mg(NH4-N)/l. In addition to nominal load phase, high and low load phases with periods of 2 weeks with 50% higher and lower organic loads were simulated, respectively. The HF CW showed a good capacity to cope with the hourly variations, as concentrations at the outlet were constant (effluent concentrations of 319 mg COD/l and 108 mg NH4-N/l, respectively). During the high load phase, the COD effluent concentration was increased by 16% whereas the NH4-N effluent concentrations were decreased by 5%, respectively. During the low load phase, the COD effluent concentrations was decreased by 16% and the NH4-N effluent concentrations increased by 3%, respectively. After the end of the high and low load events, the system was able to recover original removal performances. The results of this work provide novel insights into the internal processes of a HF CW facing time-variable loads, as well as providing interesting insights for future designers. (C) 2016 Elsevier B.V. All rights reserved.
机译:水平流人工湿地(HF CW)在处理高度变化的进水负荷(例如旅游设施,雨水)方面显示出良好的效率。然而,最近的研究强调了高频连续波故障在治疗高突然负荷中的可能性。为了限制对表面积的过度高估以应对突然的负载,需要对HF对随时间变化的负载的响应有更深入的了解。考虑到这一目标,使用建模方法研究了高频连续波对时变负载的响应。根据欧洲标准中测试的每日负荷模式的规范,使用经过验证的实验室高频连续波(1.1 mx 0.76 mx 0.3 m)的基于过程的数值模型来研究对每小时和每日突然负荷的响应小型废水处理厂。在标称负荷下,系统每天以101 mg(COD)/ l和21 mg(NH4-N)/ l的负荷加载101人工废水。除了标称负载阶段外,还分别模拟了2周期间的高负载阶段和低负载阶段,有机负载分别高和低50%。由于出口处的浓度恒定(出水浓度分别为319 mg COD / l和108 mg NH4-N / l),因此HF CW具有应对小时变化的良好能力。在高负荷阶段,COD废水浓度分别增加了16%,而NH4-N废水浓度减少了5%。在低负荷阶段,COD废水浓度分别降低了16%,NH4-N废水浓度提高了3%。高负荷和低负荷事件结束后,系统能够恢复原始的清除性能。这项工作的结果提供了对面对时变负载的HF CW内部过程的新颖见解,并为未来的设计师提供了有趣的见解。 (C)2016 Elsevier B.V.保留所有权利。

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