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首页> 外文期刊>The Science of the Total Environment >Intermittent aeration to improve wastewater treatment efficiency in pilot-scale constructed wetland
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Intermittent aeration to improve wastewater treatment efficiency in pilot-scale constructed wetland

机译:间歇曝气以提高中试规模人工湿地的废水处理效率

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摘要

Forced aeration of horizontal subsurface flow constructed wetlands (HSSF CWs) is nowadays a recognized method to improve treatment efficiency, mainly in terms of ammonium removal. While numerous investigations have been reported testing constant aeration, scarce information can be found about the efficiency of intermittent aeration. This study aims at comparing continuous and intermittent aeration, establishing if there is an optimal regime that will increase treatment efficiency of HSSF CWs whilst minimizing the energy requirement Full and intermittent aeration were tested in a pilot plant of three HSSF CWs (2.64 m~2 each) fed with primary treated wastewater. One unit was fully aerated; one intermittendy aerated (i.e. by setting a limit of 0.5 mg/L dissolved oxygen within the bed) with the remaining unit not aerated as a control. Results indicated that intermittent aeration was the most successful operating method. Indeed, the coexistence of aerobic and anoxic conditions promoted by the intermittent aeration resulted in the highest COD (66%), ammonium (99%) and total nitrogen (79%) removals. On the other hand, continuous aeration promotes ammonium removal (99%), but resulted in nitrate concentrations in the effluent of up to 27 mg/L This study demonstrates the high potential of the intermittent aeration to increase wastewater treatment efficiency of CWs providing an extreme benefit in terms of the energy consumption.
机译:如今,水平地下流人工湿地(HSSF CW)的强制通气是公认的提高处理效率的方法,主要是在去除铵方面。虽然已经报告了许多试验来测试恒定通气量,但是关于间歇通气效率的信息却很少。这项研究旨在比较连续和间歇曝气,确定是否存在最佳的方案可以提高HSSF CW的处理效率,同时将能源需求降至最低。在三台HSSF CW的中试工厂(每个2.64 m〜2 )喂入初级处理废水。其中一个单元已完全充气。进行一次间歇充气(即,将床内溶解氧的限值设定为0.5 mg / L),其余单元不充气作为对照。结果表明,间歇通气是最成功的操作方法。确实,间歇曝气促进的好氧和缺氧条件的共存导致最高的COD(66%),铵(99%)和总氮(79%)去除率。另一方面,连续曝气可促进铵去除(99%),但导致废水中的硝酸盐浓度高达27 mg / L。该研究表明间歇曝气在提高连续水处理废水效率方面具有巨大潜力在能耗方面受益。

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