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设计和运行变量对处理池塘废水的垂直流人工湿地和间歇砂滤器性能的影响。

Impact of design and operation variables on the performance of vertical-flow constructed wetlands and intermittent sand filters treating pond effluent.

作者信息

Torrens Antonina, Molle Pascal, Boutin Catherine, Salgot Miquel

机构信息

Soil Science Lab, University of Barcelona, 08028 Barcelona, Spain.

出版信息

Water Res. 2009 Apr;43(7):1851-8. doi: 10.1016/j.watres.2009.01.023. Epub 2009 Feb 4.

Abstract

With the aim of improving the quality of the effluent from a waste stabilization pond (WSP) different types of vertical-flow constructed wetlands (VFCWs) and intermittent sand filters (ISFs) were tested at a pilot plant in Aurignac (France). The effectiveness of each design at upgrading the pond effluent was studied over a period of 2 years. Physicochemical parameters were monitored by taking composite samples over 24h and grab samples every week. The hydraulic behaviour of the filters was studied using (NaCl) tracer tests and monitoring the infiltration rate. This paper describes the influence on the performance of the beds of: (a) the characteristics of the medium (type of sand, depth, and presence of Phragmites); (b) feed modes; and (c) the presence of an algae clogging layer. The study demonstrates the viability of VFCWs and ISFs as means of upgrading effluent from WSPs. For hydraulic loads (HL) of up to 80cm/day, both technologies effectively retain algae, complete organic matter degradation, and nitrify the pond effluent. The presence of plants did not significantly affect the performance of the filters although it was important in terms of maintenance. The deeper filters presented better removals for all the parameter tested, due to higher hydraulic detention times (HDTs). The dosing regime and resting period duration all affected the hydraulic performance and purification efficiency of the filters.

摘要

为提高稳定塘废水的质量,在法国奥里尼亚克的一个中试工厂对不同类型的垂直流人工湿地(VFCW)和间歇砂滤池(ISF)进行了测试。在两年的时间里研究了每种设计对池塘废水升级处理的有效性。通过采集24小时混合样本和每周的抓取样本监测物理化学参数。使用(NaCl)示踪试验并监测渗透速率来研究滤池的水力行为。本文描述了以下因素对滤床性能的影响:(a)介质特性(砂的类型、深度和芦苇的存在情况);(b)进水模式;(c)藻类堵塞层的存在情况。该研究证明了VFCW和ISF作为升级稳定塘废水手段的可行性。对于高达80厘米/天的水力负荷(HL),这两种技术都能有效截留藻类、完成有机物降解并使池塘废水硝化。植物的存在虽然对维护很重要,但对滤池性能没有显著影响。由于水力停留时间(HDT)更长,更深的滤池对所有测试参数的去除效果更好。投加方式和休息期持续时间都会影响滤池的水力性能和净化效率。

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