...
首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Effect of hydraulic retention time on the treatment of secondary effluent in a subsurface flow constructed wetland
【24h】

Effect of hydraulic retention time on the treatment of secondary effluent in a subsurface flow constructed wetland

机译:水力停留时间对地下流人工湿地二次污水处理的影响

获取原文
获取原文并翻译 | 示例

摘要

This study evaluates the potential of subsurface flow (SSF) constructed wetlands (CWs) for tertiary treatment of wastewater at four shorter HRTs (1 -4 days). The CWs were planted with Typha angustata, which was observed in our earlier study to be more efficient than Phragmites karka and Scirpus littoralis. The CWs comprised four rectangular treatment cells (2.14m × 0.76m × 0.61 m) filled with layers of gravel of two different sizes (approximately 2.5 cm and 1.5 cm diameter) to a depth of 0.61 m. The inflow rates of the secondary effluent in the four cells were accordingly fixed at 300 Ld~(-1), l50Ld~(-1), 100Ld~(-1) and 75 Ld~(-1), respectively, for 1,2,3 and 4 days HRT. The hydraulic loads ranged between 59.05 mmd~(-1) and 236.22 mm d~(-1).The wastewater inflow into the CW system as well as the treated effluent were analyzed, using standard methods, at regular intervals for various forms of nitrogen (NH4-N, NO3-N and TKN), orthophosphate-P and organic matter (BOD and COD) concentrations over a period of five weeks after the development of a dense stand.The higher HRT of 4 days not only helped maximum removal of all the pollutants but also maintained the stability of the treatment efficiency throughout the monitoring period. For the nutrients (NH4-N, NO3-N and TKN), HRT played a more significant role in their removal than in case of organic matter (BOD3 and COD). More than 90% of NO3-N and TKN and 100% of NH4-N were removed from the wastewater at 4 days HRT.At lower HRTs, the mass loading rate was higher with greater fluctuation. However mass reduction efficiency of the T. angustata CW for all forms of nitrogen was >80% with the HRTs of 2,3 and 4 days.
机译:这项研究评估了在四个较短的HRT(1-4天)下,地下流(SSF)人工湿地(CW)对废水进行三次处理的潜力。 CW种植了香蒲,在我们较早的研究中观察到它比芦苇(Phragmites karka)和立枯草(Scirpus littoralis)更有效。 CW包括四个矩形处理室(2.14m×0.76m×0.61 m),其中填充了两种不同尺寸(直径分别为2.5 cm和1.5 cm)的砾石层,深度为0.61 m。因此,在四个单元中,次级污水的流入量分别固定为300 Ld〜(-1),150Ld〜(-1),100Ld〜(-1)和75 Ld〜(-1), 2,3和4天的HRT。水力负荷范围为59.05 mmd〜(-1)至236.22 mm d〜(-1)。使用标准方法,定期对CW系统中的废水流入量和处理过的废水进行分析,以分析各种形式的氮浓密林分形成后的五周内,NH4-N,NO3-N和TKN,正磷酸盐-P和有机物(BOD和COD)的浓度较高.4天的较高HRT不仅有助于最大程度地去除在整个监测期内,所有污染物均保持了治疗效率的稳定性。对于营养素(NH4-N,NO3-N和TKN),HRT在去除有机物(BOD3和COD)方面起着更重要的作用。在HRT 4天时,从废水中去除了90%以上的NO3-N和TKN,以及100%NH4-N。在HRT较低时,质量负载率较高,波动较大。但是,对于2,3和4天的HRT,所有形式的氮的T. angustata CW的质量降低效率均> 80%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号