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Wastewater Treatment Plant Performance Inside Multi-Soil-Layering System

机译:多层土壤系统中污水处理厂的性能

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Wastewater effluent disposal is a challenge in Moroccan rural area. Wastewater treatment is the only suitable solution to overcome these environmental constraints. Technology such as Multi-Soil-Layering (MSL) system is one of the most appropriate solution for the treatment of wastewater for small communities in rural areas. The MSL system overcomes many of the deficiencies of conventional soil treatment systems such as large land requirement clogging and low Hydraulic Loading Rate (HLR). The MSL systems are composed of Soil Mixture Blocks (SMB) arranged in a brick-like pattern and surrounded by Permeable Layers (PL). To investigate the efficiency of MSL systems in relation to HLR differences and the fluctuations in the wastewater contamination levels, three MSL pilot plants were alimented continuously by domestic wastewater, were constructed in three 36×30×65 cm plastic boxes, with different HLR of 250, 500 and 1000 l/m2/day. The main removal rates of Biochemical Oxygen Demand (BOD5) and Chemical Oxygen Demand (COD) were higher at higher HLR. However, the kinetic rate constant of the MSL process implemented under Moroccan conditions is 130 d-1 at 25°C.
机译:在摩洛哥农村地区,废水处理是一个挑战。废水处理是克服这些环境限制的唯一合适解决方案。多土壤分层(MSL)系统等技术是农村小社区污水处理的最合适解决方案之一。 MSL系统克服了传统土壤处理系统的许多缺陷,例如土地需求大而堵塞和水力负荷率(HLR)低。 MSL系统由以砖块状排列并被渗透层(PL)包围的土壤混合块(SMB)组成。为了研究与HLR差异和废水污染水平波动相关的MSL系统的效率,我们在三个36×30×65 cm的塑料盒中建造了三个MSL中试工厂,用它们不断补充生活用水,其中三个HLR为250 ,500和1000 l / m2 /天。 HLR越高,生化需氧量(BOD5)和化学需氧量(COD)的主要去除率越高。然而,在摩洛哥条件下实施的MSL方法的动力学速率常数在25℃为130d-1。

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