AN EFFICIENT APPROACH TO MANAGE DOMESTIC WASTEWATER IN SMART CITY

A. Taouraout, A. Chahlaoui, D. Belghyti, I. Taha, M. Lachhab
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Abstract

Abstract. The adoption of an ecological sanitation system, meeting the requirements hygienic and sanitary, constitutes a feasible and technically and economically acceptable solution in the future smart city. This new sanitation concept has the advantage of solving the problems of pathogens of human waste at source, thus offering the possibility of reusing them after treatment (recycling) in order to improve the standard of living of the population and protect the environment. The aim of this study is to evaluate the efficiency of a vertical Multi-Soil-Layering system (MSL) system to treat domestic wastewater under three hydraulic loading rates: 250 L/m2/day, 350 L/m2/day and 500 L/m2/day, in Moroccan conditions. To do this, a vertical MSL system measuring 20cm × 60cm × 78cm (L × W × H) was designed to treat domestic wastewater and his performance was investigated. The results showed high removal of organic matters and nutrients under the three hydraulic loads tested; the performance averages recorded are upper than 84 % for organic matters, 83.1 ± 7.2 % for ammonium and 72.4 ± 14.1 % for orthophosphate. The quality of the treated wastewater was evaluated according to Moroccan reject limit value. Consequently, this system could be considered an effective solution to be adopted for decentralized domestic wastewater treatment in Moroccan conditions.
智慧城市生活污水的有效管理方法
摘要采用符合卫生和卫生要求的生态卫生系统,是未来智慧城市中可行的、技术上和经济上可接受的解决方案。这种新的卫生概念的优点是从源头上解决了人类排泄物的病原体问题,从而提供了处理后(回收)再利用的可能性,以提高人们的生活水平和保护环境。本研究的目的是评估在摩洛哥条件下,垂直多层土壤系统(MSL)系统在三种水力负荷率下处理生活污水的效率:250 L/m2/天、350 L/m2/天和500 L/m2/天。为此,设计了一个尺寸为20cm × 60cm × 78cm(长×宽×高)的垂直MSL系统来处理生活污水,并对其性能进行了研究。结果表明:在3种水力负荷下,有机物和营养物的去除率较高;有机质、铵态氮和正磷酸盐的平均性能分别高于84%、83.1±7.2%和72.4±14.1%。根据摩洛哥废液极限值对处理后的废水进行了水质评价。因此,这一系统可被视为在摩洛哥条件下分散处理家庭废水的有效解决办法。
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