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首页> 外文期刊>The Science of the Total Environment >Purification capacity of a highly loaded laboratory scale tidal flow reed bed system with effluent recirculation
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Purification capacity of a highly loaded laboratory scale tidal flow reed bed system with effluent recirculation

机译:具有废水再循环的高负荷实验室规模潮汐流芦苇床系统的净化能力

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The purification capacity of a laboratory scale tidal flow reed bed system with final effluent recirculation at a ratio of 1:1 was investigated in this study. In particular, the four-stage reed bed system was heavily loaded with strong agricultural wastewater. Under the hydraulic and organic loading rates of 0.43 M-3/M(2.)d and 1055 gCOD/m(2.)d, respectively, the average removal efficiencies obtained for COD, BOD5, SS, NH4-N and P were 77%, 78%, 66%, 62% and 38%, respectively. Even with the high loading rates, approximately 30% of NH4-N was converted into NO2-N and NO3-N from the mid-stage of the system where nitrification took place. The results suggest that the multi-stage reed bed system could be employed to treat strong wastewater under high loading, especially for the substantive mass removal of solids, organic matter and ammoniacal-nitrogen. Tidal flow combined with effluent recirculation is a favourable operation strategy to achieve this objective. (C) 2004 Elsevier B.V. All rights reserved.
机译:在这项研究中,研究了最终规模的废水再循环比例为1:1的实验室规模的潮汐流芦苇床系统的净化能力。特别是四级芦苇床系统充满了浓重的农业废水。在分别为0.43 M-3 / M(2.d)和1055 gCOD / m(2.d)的水力和有机负荷下,COD,BOD5,SS,NH4-N和P的平均去除效率分别为分别为77%,78%,66%,62%和38%。即使负载率很高,从发生硝化作用的系统中间阶段,仍有大约30%的NH4-N转化为NO2-N和NO3-N。结果表明,多级芦苇床系统可用于处理高负荷下的强废水,特别是用于固体,有机物和氨氮的大量去除。潮水与废水再循环相结合是实现该目标的有利操作策略。 (C)2004 Elsevier B.V.保留所有权利。

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