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首页> 外文期刊>Environmental Science and Pollution Research >Achieving an extraordinary high organic and hydraulic loadings with good performance via an alternative operation strategy in a multi-stage constructed wetland system
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Achieving an extraordinary high organic and hydraulic loadings with good performance via an alternative operation strategy in a multi-stage constructed wetland system

机译:通过在多级构造的湿地系统中通过替代操作策略实现具有良好性能的非凡的高有机和液压载荷

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摘要

In this study, a high organic loading rate of 58–146?g?BOD~(5)/m_(2)?day with a hydraulic loading rate (HLR) of 1.63?m_(3)/m_(2)?day and retention time (RT) of 16?h was achieved to maximize the treatment capacity of a four-stage alum sludge-based constructed wetland (CW) system. An alternative operation strategy, i.e., the first stage anaerobic up-flow and the remaining stage tidal flow with effluent recirculation, was investigated to achieve the goal with good treatment performance of 82% COD, 91% BOD~(5), 92% SS, 94% NH~(4)-N, and 82% TN removal. Two kinetic models, i.e., first-order model and Monod plus continuous stirred-tank reactor (CSTR) flow model, were employed for predicting the removal dynamics. The results showed that the tidal flow strategy enhances oxygen transport and diffusion, thus improving reduction of organics and NH~(4)-N. Effluent recirculation could further increase elimination of organics by extending the interaction time and also benefit the denitrification process. In addition, denitrification could be further enhanced by anaerobic up-flow in the first stage.
机译:在该研究中,高有机加载速率为58-146Ω·克〜(5)/ m_(2)?日液压加载率(HLR)为1.63Ω·(3)/ m_(2)?日达到了16μl的保留时间(RT)以最大化四阶段污泥的构建湿地(CW)系统的处理能力。研究了替代操作策略,即,具有流出物再循环的第一阶段厌氧上流和剩余的阶段潮流,以实现82%COD的良好治疗性能,91%BOD〜(5),92%SS ,94%NH〜(4)-N,82%的删除。使用两个动力学模型,即一阶模型和Monod加连续搅拌罐式反应器(CSTR)流动模型,用于预测去除动态。结果表明,潮流策略增强了氧气输送和扩散,从而改善了有机物和NH〜(4)-N的减少。流出后再循环可以通过延长相互作用时间进一步增加对有机物的消除,并使反硝化过程有益。此外,在第一阶段中的厌氧上流可以进一步增强反硝化。

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