MOE Key Laboratory of Resources and Environmental Systems Optimization, North China Electric Power University, Beijing, 102206, China.
Center for Energy, Environment and Ecology Research, UR-BNU, Beijing Normal University, Beijing, 100875, China.
J Environ Manage. 2019 Jun 15;240:273-284. doi: 10.1016/j.jenvman.2019.03.097. Epub 2019 Apr 2.
Domestic sewage in rural areas is often poorly treated and discharged into waters, resulting in negative impacts on regional environment, natural resources and human health. A cost-efficient decentralized sewage treatment technology is sustainably necessary for rural areas. In this study, a modified multi-soil-layering (MSL) system was developed to specifically treat low C/N ratio domestic sewage in rural areas. The results proved the good performance of MSLs in sewage treatment under complex conditions. The highest degradation rates of COD, TP, NH-N, NO-N, TN among all the devices could reach 98.29%, 100%, 76.60%, 96.15% and 69.86%, respectively. During the operation, MSL5 and MSL6 showed the best overall performance of contaminant removal. The effects of single factors and their interactions on the performance of MSL systems were further revealed through factorial analyses. In order to simulate and predict nitrogen removal of MSL system, a statistical relationship between TN removal rate and operation parameters was also successfully developed based on stepwise cluster analysis. Such modeling of nitrogen removal model can help develop an optimal strategy for the operation of MSL in treating low C/N ratio sewage from rural areas.
农村生活污水通常处理不佳,直接排放到水体中,对区域环境、自然资源和人类健康造成负面影响。对于农村地区而言,可持续的、具有成本效益的分散式污水处理技术是十分必要的。在本研究中,开发了改良型多土层(MSL)系统,专门用于处理农村地区低 C/N 比的生活污水。研究结果证明了 MSL 在复杂条件下处理污水的良好性能。所有装置中 COD、TP、NH₃-N、NO₃-N 和 TN 的最高降解率分别可达 98.29%、100%、76.60%、96.15%和 69.86%。在运行过程中,MSL5 和 MSL6 表现出最佳的整体污染物去除效果。通过析因分析进一步揭示了单因素及其交互作用对 MSL 系统性能的影响。为了模拟和预测 MSL 系统的脱氮效果,还基于逐步聚类分析成功建立了 TN 去除率与运行参数之间的统计关系。这种脱氮模型的建模方法可以帮助制定处理农村低 C/N 比污水的 MSL 最佳运行策略。