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Recycled vertical flow constructed wetland (RVFCW)—a novel method of recycling greywater for irrigation in small communities and households

机译:循环垂直流人工湿地(RVFCW)—一种用于中小社区和家庭灌溉灰水的新方法

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The use of greywater for irrigation is becoming increasingly common. However, raw greywater is often contaminated and can cause environmental harm and pose health risks. Nevertheless, it is often used without any significant pretreatment, a practice mistakenly considered safe. The aim of this study was to develop an economically sound, low-tech and easily maintainable treatment system that would allow safe and sustainable use of greywater for landscape irrigation in small communities and households. The system is based on a combination of vertical flow constructed wetland with water recycling and trickling filter, and is termed recycled vertical flow constructed wetland (RVFCW). The RVFCW's properties, removal efficiency, hydraulic parameters and feasibility were studied, as well as the environmental effects of the treated greywater, as reflected by soil and plant parameters over time. The RVFCW was efficient at removing virtually all of the suspended solids and biological oxygen demand, and about 80% of the chemical oxygen demand after 8 h. Fecal coliforms dropped by three to four orders of magnitude from their initial concentration after 8 h, but this was not always enough to meet current regulations for unlimited irrigation. The treated greywater had no significant negative impact on plants or soil during the study period. The feasibility analysis indicated a return over investment after approximately three years. We concluded that the RVFCW is a sustainable and promising treatment system for greywater use that can be run and maintained by unskilled operators.
机译:使用灰水进行灌溉变得越来越普遍。但是,原始的灰水经常被污染,会造成环境危害并构成健康风险。然而,它经常在没有任何重大预处理的情况下使用,这种做法被误认为是安全的。这项研究的目的是开发一种经济上合理,技术含量低且易于维护的处理系统,该系统将允许在小社区和家庭中安全,可持续地使用灰水进行景观灌溉。该系统基于垂直流人工湿地与水循环利用和滴滤池的组合,被称为再循环垂直流人工湿地(RVFCW)。研究了RVFCW的特性,去除效率,水力参数和可行性,以及经过处理的中水的环境影响,这些随时间推移由土壤和植物参数反映出来。 RVFCW可有效去除几乎所有悬浮固体和生物需氧量,并在8小时后去除约80%的化学需氧量。粪大肠菌群在8小时后比其初始浓度下降了3到4个数量级,但这并不足以满足当前无限灌溉的规定。在研究期间,处理过的灰水对植物或土壤没有明显的负面影响。可行性分析表明,大约三年后,投资回报率很高。我们得出的结论是,RVFCW是用于灰水使用的可持续且有前途的处理系统,可由非熟练操作人员运行和维护。

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