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Efficiency of a Multi-Soil-Layering System on Wastewater Treatment Using Environment-Friendly Filter Materials

机译:使用环保过滤材料的多层土壤处理系统在废水处理中的效率

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摘要

The multi-soil-layering (MSL) system primarily comprises two parts, specifically, the soil mixture layer (SML) and the permeable layer (PL). In Japan, zeolite is typically used as the permeable layer material. In the present study, zeolite was substituted with comparatively cheaper and more environmentally friendly materials, such as expanded clay aggregates, oyster shells, and already-used granular activated carbon collected from water purification plants. A series of indoor tests indicated that the suspended solid (SS) removal efficiency of granular activated carbon was between 76.2% and 94.6%; zeolite and expanded clay aggregates achieved similar efficiencies that were between 53.7% and 87.4%, and oyster shells presented the lowest efficiency that was between 29.8% and 61.8%. Further results show that the oyster shell system required an increase of wastewater retention time by 2 to 4 times that of the zeolite system to maintain similar chemical oxygen demand (COD) removal efficiency. Among the four MSL samples, the zeolite system and granular activated carbon system demonstrated a stable NH3-N removal performance at 92.3%–99.8%. The expanded clay aggregate system present lower removal performance because of its low adsorption capacity and excessively large pores, causing NO3-N to be leached away under high hydraulic loading rate conditions. The total phosphorous (TP) removal efficiency of the MSL systems demonstrated no direct correlation with the permeable layer material. Therefore, all MSL samples achieved a TP efficiency of between 92.1% and 99.2%.
机译:多土壤分层(MSL)系统主要包括两部分,特别是土壤混合层(SML)和渗透层(PL)。在日本,通常将沸石用作可渗透层材料。在本研究中,用较便宜和更环保的材料代替了沸石,例如膨胀的粘土聚集体,牡蛎壳和从净水厂收集的已经使用的颗粒状活性炭。一系列室内试验表明,颗粒状活性炭对悬浮物的去除率在76.2%至94.6%之间。沸石和膨胀黏土聚集体的效率相似,在53.7%至87.4%之间,而牡蛎壳的效率最低,在29.8%至61.8%之间。进一步的结果表明,牡蛎壳系统需要将废水保留时间增加到沸石系统的2到4倍,才能维持相似的化学需氧量(COD)去除效率。在这四个MSL样品中,沸石系统和颗粒活性炭系统显示出稳定的NH3-N去除性能,为92.3%–99.8%。膨胀的黏土骨料系统由于其低吸附能力和过大的孔隙而表现出较低的去除性能,从而导致在高水力负荷条件下将NO3 - -N淋溶掉。 MSL系统的总磷(TP)去除效率与渗透层材料没有直接关系。因此,所有MSL样品的TP效率均在92.1%至99.2%之间。

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