Cui Li-hua, Liu Wen, Zhu Xi-zhen, Ma Mei, Huang Xi-hua, Xia Yan-yang
Department of Environmental Science and Engineering, South China Agricultural University, Guangzhou, China.
J Environ Sci (China). 2006;18(4):665-9.
The integrated wetland systems were constructed by combining horizontal-flow and vertical-flow bed, and their purification efficiencies for septic tank effluent were detected when the hydraulic retention time (HRT) was 1 d, 3 d, 5 d under different seasons. The results showed that the removal efficiencies of the organics, phosphorus were steady in the hybrid systems, but the removal efficiency of total nitrogen was not steady due to high total nitrogen concentration in the septic tank effluent. The average removal rates of COD (chemical oxygen demand) were 89%, 87%, 83%, and 86% in summer, autumn, winter and spring, respectively, and it was up to 88%, 85%, 73%, and 74% for BOD5 (5 d biochemical oxygen demand) removal rate in four seasons. The average removal rates of TP (total phosphorous) could reach up to 97%, 98%, 95%, 98% in four seasons, but the removal rate of TN (total nitrogen) was very low. The results of this study also indicated that the capability of purification was the worst in winter. Cultivating with plants could improve the treated effluent quality from the hybrid systems. The results of the operation of the horizontal-flow and vertical-flow cells (hybrid systems) showed that the removal efficiencies of the organics, TP and TN in horizontal-flow and vertical-flow cells were improved significantly with the extension of HRT under the same season. The removal rate of 3 d HRT was obviously higher than that of 1 d HRT, and the removal rate of 5 d HRT was better than that of 3 d HRT, but the removal efficiency was not very obvious with the increment of HRT. Therefore, 3 d HRT might be recommended in the actual operation of the hybrid systems for economic and technical reasons.
综合湿地系统是通过结合水平流床和垂直流床构建而成的,在不同季节,当水力停留时间(HRT)分别为1天、3天、5天时,检测了它们对化粪池出水的净化效率。结果表明,混合系统中有机物、磷的去除效率较为稳定,但由于化粪池出水中总氮浓度较高,总氮的去除效率不稳定。夏季、秋季、冬季和春季化学需氧量(COD)的平均去除率分别为89%、87%、83%和86%,五日生化需氧量(BOD5)的去除率在四个季节分别达到88%、85%、73%和74%。总磷(TP)的平均去除率在四个季节可达97%、98%、95%、98%,但总氮(TN)的去除率很低。本研究结果还表明,冬季的净化能力最差。种植植物可以改善混合系统的出水水质。水平流池和垂直流池(混合系统)的运行结果表明,在同一季节,随着水力停留时间的延长,水平流池和垂直流池中有机物、总磷和总氮的去除效率显著提高。3天水力停留时间的去除率明显高于1天水力停留时间,5天水力停留时间的去除率优于3天水力停留时间,但随着水力停留时间的增加,去除效率提升并不十分明显。因此,出于经济和技术原因,在混合系统的实际运行中,建议采用3天的水力停留时间。