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Nitrogen removal in recirculated duckweed ponds system

机译:浮萍池塘系统中的氮去除

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Duckweed-based ponds (DWBPs) have the potential for nitrogen (N) removal from wastewater; however, operational problems such as duckweed die-off regularly occur. In this study, effluent recirculation was applied to the DWBPs to solve the above problem as well as to investigate N removal mechanisms. Two pilot scale recirculated DWBPs were employed to treat municipal wastewater. The average removal efficiencies for TN, TKN and NH4-N were 75%, 89% and 92%, respectively at TN loading of 1.3 g/m2.d and were 73%, 74% and 76%, respectively at TN loading of 3.3 g/m2.d. The effluent of the system under both operational conditions had stable quality and met the effluent standard. Duckweed die-off was not observed during the study, which proves the system stability and effluent recirculation which is thought to be a reason. N-mass balance revealed that nitrification–denitrification and duckweed uptake play major roles in these recirculated DWBPs. The rates of nitrification–denitrification were increased as TN loading was higher, which might be an influence from an abundance of N and a suitable condition. The rates of N uptake by duckweed were found similar and did not depend on the higher TN loading applied, as the duckweed has limited capacity to assimilate it.
机译:基于浮萍的池塘(DWBP)具有从废水中去除氮(N)的潜力。但是,经常会出现浮萍消亡等操作问题。在这项研究中,废水再循环被应用于DWBP,以解决上述问题以及研究N的去除机理。使用了两个中试规模的再循环DWBP处理市政废水。 TN负荷为1.3 g / m2.d时,TN,TKN和NH4-N的平均去除效率分别为75%,89%和92%,TN负荷为3.3时分别为73%,74%和76%。克/平方米在两种运行条件下,系统的出水质量稳定,达到出水标准。在研究过程中未观察到浮萍消亡,这证明了系统的稳定性和废水再循环是一个原因。氮的质量平衡表明硝化-反硝化作用和浮萍的吸收在这些再循环的DWBP中起主要作用。随着TN含量的增加,硝化-反硝化的速率增加,这可能是由于氮含量和适当条件的影响。发现浮萍吸收氮的速率相似,并且不取决于所施加的更高的总氮负荷,因为浮萍吸收氮的能力有限。

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