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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Response of a tidal operated constructed wetland to sudden organic and ammonium loading changes in treating high strength artificial wastewater
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Response of a tidal operated constructed wetland to sudden organic and ammonium loading changes in treating high strength artificial wastewater

机译:潮汐人工湿地对高强度人工废水处理中有机和铵盐负荷突然变化的响应

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The knowledge on the response of tidal-operated constructed wetlands (CWs) to suddenly changed influent characteristics, such as ammonium and organic matter concentrations, remains unclear. This study set up a pilot-scale tidal-operated CW and examined its response to various sudden organic matter and ammonium loading changes under constant hydraulic loading rate and retention time. Results showed an oxidative condition in the wetland bed with a high oxygen transfer rate induced by tidal operation. Effluent ammonium fluctuated from 0.5 mg/L to 62 mg/L when the ammonium pulse loadings were adopted, indicating the limited buffering capacity of tidal-operated CWs to influent ammonium pulse loadings because of the short contact time. No negative influence from influent COD pulse loadings to nitrification was observed, even when the influent COD concentration increased up to 1200 mg/L. The average constant effluent COD concentrations of 47 mg/L and high removal efficiencies of 93% under various pulse loadings (300-1200 mg/L) strongly indicated the high buffering capacity of tidal-operated CWs to suddenly changed organic matter loadings as well as its high degradation capacity driven by the enhanced oxygen transfer rate of tidal operation. (C) 2015 Elsevier B.V. All rights reserved.
机译:潮汐控制的人工湿地(CW)对突然变化的进水特性(例如铵和有机物浓度)的响应的知识仍然不清楚。这项研究建立了一个中试规模的潮汐式连续水,并考察了它在恒定的水力负荷率和保留时间下对各种突然的有机物和铵负荷变化的响应。结果表明,潮汐运行在湿地河床中具有氧化性,氧转移速率高。当采用铵脉冲负载时,出水氨从0.5 mg / L波动至62 mg / L,这表明由于接触时间短,潮汐操作的连续水对进水铵脉冲负载的缓冲能力有限。即使进水COD浓度增加到1200 mg / L,也未观察到进水COD脉冲负载对硝化的负面影响。在各种脉冲负载(300-1200 mg / L)下,平均恒定出水COD浓度为47 mg / L,高去除效率为93%,这强烈表明潮汐操作的连续水处理厂对突然改变的有机物负载以及缓冲液的高缓冲能力。其高降解能力是由潮汐操作中提高的氧气传输速率驱动的。 (C)2015 Elsevier B.V.保留所有权利。

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