不同种类大型植物在人工湿地系统中处理生活污水的性能

D. Sandri, Ana Paula Reis
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引用次数: 1

摘要

目的是评估人工湿地系统的初始性能,以及大型植物物种香蒲(Typha spp.) (CWt)、刺尾草(Cyperus giganteus) (CWp)、白花百合(Hedychium coronarium Koehne) (CWl)和日光栽培(UNc)在处理厕所和餐馆污水中的发展情况。测定了氢电位、电导率、总悬浮物、总固形物、生化需氧量、化学需氧量、浊度、硝酸盐、铵态氮、总磷酸盐、水力滞留时间(HRT)、潜在蒸散(PET)的变化以及大型植物的发育和适应情况。的表面积??每个人工湿地(CW)的表面积为16.25 m2,平均处理容积为0.40 m3 d-1,连续变化的水平地下流等量输入之前由三个化粪池串联处理的污水,单个有用容积为5.100 l。CWt、CWp和CWl的PET高于UNc。CWp、CWt和CWl的出水pH值最高。大型植物的使用对化粪池和UNc出水的EC、TS、BOD5、20、COD和硝酸盐含量均较低,铵态氮和总磷酸盐含量高于进水。pH值与N-NH4+相关,浊度与COD相关,TS与EC相关,BOD5、20和COD与NO3-相关。尾香蒲和香蒲在连续栽培后半期植株发育最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of constructed wetland system using different species of macrophytes in the treatment of domestic sewage treatment
The objective is to assess the initial performance of a constructed wetland system and the development of the macrophyte species cattail(Typha spp.) (CWt), piripiri (Cyperus giganteus) (CWp), and white garland lily (Hedychium coronarium Koehne) (CWl) and an suncultivated (UNc) on the treatment of sewage from toilets and from a restaurant. Changes in hydrogen potential, electrical conductivity, total suspended solids, total solids, biochemical oxygen demand, chemical oxygen demand, turbidity, nitrate, ammonium nitrogen, total phosphate, hydraulic retention time (HRT), and potential evapotranspiration (PET) and the development and adaptation of macrophytes were measured. The surface area of ??each constructed wetland (CW) had a surface area of 16.25 m2 and average volume treated of 0.40 m3 d-1, with continuous variable horizontal subsurface flow equally fed with sewage previously treated in three septic tanks in series, with an individual useful volume of 5.100 L. The PET in CWt, CWp and CWl was higher than that of UNc. The highest pH values were obtained in the effluent of CWp, CWt, and CWl. The use of macrophytes did not influence the EC, TS, BOD5,20, COD, and nitrate were lower and ammonium nitrogen and total phosphate were higher in the effluent of CWs and UNc in relation to the influent. The efficiency indexes that showed a very strong Pearson correlations (> 90%) were pH correlated with N-NH4+, turbidity correlated with COD, TS correlated with EC, and BOD5,20 and COD correlated with NO3-.Piripiri and cattails showed the best development of plants in the second half of CW.
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