Zimmo O R, van der Steen N P, Gijzen H J
Department of Civil Engineering, Faculty of Engineering, Birzeit University, PO Box 14, Birzeit, West Bank, Palestine.
Water Res. 2004 Feb;38(4):913-20. doi: 10.1016/j.watres.2003.10.044.
Nitrogen removal processes and nitrogen mass balances in algae-based ponds (ABPs) and duckweed (Lemna gibba)-based ponds (DBPs) were assessed during periods of 4 months, each under different operational conditions. During periods 1 and 2, the effect of cold and warm temperature was studied. During periods 2 and 3, the effect of low- and high-system organic loading (OL) was studied in warm seasons operation. The pilot-scale systems consisted of four similar ponds in series fed with domestic sewage with hydraulic retention time of 7 days in each pond. Overall nitrogen removal was higher during warm temperature in both ABPs and DBPs, but similar during periods 2 and 3. Nitrogen removal in DBPs was lower than in ABPs by 20%, 12% and 8% during cold temperature, warm temperature and high-OL periods, respectively. Depending on temperature and OL rate, ABPs showed higher nitrogen removal via sedimentation (46-245% higher) compared to DBPs. Also, ABPs also showed higher nitrogen removal via denitrification (7-37% higher) compared to DBPs. Ammonia volatilisation in both systems did not exceed 1.1% of influent total nitrogen during the entire experimental period. N uptake by duckweed corresponds to 30% of the influent nitrogen during warm/low OL period and decreased to 10% and 19% during the cold and warm/high OL period, respectively. Predictive models for nitrogen removal presented a good reflection of nitrogen fluxes on overall nitrogen balance under the prevailing experimental conditions.
在4个月的时间里,分别在不同的运行条件下,对基于藻类的池塘(ABP)和基于浮萍(细叶满江红)的池塘(DBP)中的氮去除过程和氮质量平衡进行了评估。在第1阶段和第2阶段,研究了低温和高温的影响。在第2阶段和第3阶段,研究了温暖季节运行中低系统有机负荷(OL)和高系统有机负荷的影响。中试规模的系统由四个串联的类似池塘组成,每个池塘进水为生活污水,水力停留时间为7天。在ABP和DBP中,温暖温度期间的总氮去除率都较高,但在第2阶段和第3阶段相似。在低温、温暖温度和高OL阶段,DBP中的氮去除率分别比ABP低20%、12%和8%。根据温度和OL率,与DBP相比,ABP通过沉淀的氮去除率更高(高46 - 245%)。此外,与DBP相比,ABP通过反硝化的氮去除率也更高(高7 - 37%)。在整个实验期间,两个系统中的氨挥发不超过进水总氮的1.1%。浮萍吸收的氮在温暖/低OL阶段相当于进水氮的30%,在寒冷和温暖/高OL阶段分别降至10%和19%。氮去除的预测模型很好地反映了在当前实验条件下氮通量对总氮平衡的影响。