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Effects of HRT on the efficiency of denitrification and carbon source release in constructed wetland filled with bark

机译:HRT对湿地充满树皮的湿地脱硝和碳源释放效率的影响

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摘要

Constructed wetland is widely used to treat municipal sewage. However, lack of carbon source always constraints the application of constructed wetland in advanced tailwater treatment process. Bark was used as the filler and external carbon source of constructed wetland in the study, and the effects of hydraulic retention time (HRT) on NO3- N removal efficiency and carbon release velocity were explored. Results showed that the NO3--N removal process was steady in the constructed wetland filled with bark without additional carbon source. The NO3--N removal efficiency and NO3- N concentration presented a first-order reaction. The reaction rate constant k was 0.4 day(-1). The relationship between NO3--N removal efficiency (eta) and HRT (t) was. eta = 1-e(-0.4t), and eta was increased with increasing of HRT. eta reached a maximum of 77% at HRT of 4.48 days. eta obtained the minimum of 20% at HRT of 0.75 days. The relationship between the carbon source releasing velocity (v) by bark and HRT was v = 0.53(1.62/t-1/t(2)) + 0.32. v increased first and then decreased with HRT increasing. The maximum v was detected at t = 1.12 days.
机译:建造的湿地广泛用于治疗市政污水。然而,缺乏碳源总是限制构造湿地在先进的尾水处理过程中的应用。探讨了树皮作为构造湿地的填充剂和外部碳源,探讨了液压保留时间(HRT)对NO3-N去除效率和碳释放速度的影响。结果表明,在没有额外的碳源的构造湿地中,NO3-n去除过程稳定。 NO3 - N去除效率和NO 3-N浓度呈现了一阶反应。反应速率常数K为0.4天(-1)。 NO3 - N去除效率(ETA)和HRT(T)之间的关系是。 eta = 1-e(-0.4t),并随着HRT的增加而增加。 ETA最多可在448天的HRT达到77%。 ETA在0.75天的HRT下获得至少20%。碳源释放速度(v)之间的关系通过树皮和HRT为v = 0.53(1.62 / t-1 / t(2))+ 0.32。 v首先增加,然后随着HRT的增加而降低。在T = 1.12天内检测到最大V.

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