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The influence of pre-treatment on biomat development in soil treatment units

机译:预处理对土壤处理单位生物夯发育的影响

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Soil treatment units (STUs) receiving effluent from on-site wastewater treatment systems (OWTSs) rely on the gradual development of a microbial biomat/biozone at the infiltrative surface for optimal effluent distribution and pollutant attenuation. Here, we present the first direct measurement of gradual biomat development in the field in STU trenches receiving either primary (PE) or secondary treated effluent (SE) under identical environmental, hydrological and subsoil conditions. Two domestic OWTSs were constructed in Ireland and monitored over a period of 2 years using an automated, three-dimensional network of buried soil water content sensors tracking water flow and retention within the soil underneath the infiltrative surface. While trenches receiving PE expressed signs of biomat formation along the entire length of STU trenches, biomats in trenches receiving SE were significantly muted and did not extend further than 10 m from the inlet at the end of the study. The presence of a mature biomat helped to retain soil moisture above background levels and made the system more resilient towards drought events and desiccation stress but led, in one case, to effluent ponding within the trenches. A growth-limited non-linear model fit revealed that biomats in SE trenches are expected to remain considerably shorter and will not spread along the entire trench design length, even after 10 years of operation, which is contrary to prevalent design assumptions. Muted biomat growth, on the contrary, might lead to localized hydraulic and pollutant overloading and has been shown previously to negatively affect the ability to attenuate pollutants effectively within the soil profile before the effluent reaches the groundwater.
机译:土壤处理单位(StU)从现场废水处理系统(OWTS)接受流出物(OWTS)依赖于渗透表面的微生物生物仔/生物沸虫的逐渐发展以获得最佳的流出物分布和污染物衰减。在这里,我们介绍了在相同的环境,水文和底土条件下接受伯沟沟的逐渐测量阶段的逐步生物散发电。在爱尔兰建造了两大国内欠款,并使用自动化的土壤水分含量传感器跟踪水流和渗透表面下方的土壤内的自动化,三维网络监测了一次> 2年。虽然接收PE的沟槽表达了沿着STU沟槽的整个长度的Biomat形成的迹象,但接受Se的沟槽中的生物菊可显着静音,并且在研究结束时从入口延伸到10μm。成熟的生物疫苗的存在有助于将土壤水分保持在背景水平之上,并使系统更加适应干旱事件和干燥应力,但在一个情况下,LED在沟渠内的流出物池。增长限制的非线性模型拟合揭示了SE沟槽中的生物摩将仍然相当短,即使在10年的操作之后也不会沿整个沟槽设计长度蔓延,这与普遍的设计假设相反。相反,柔和的生物培养生长可能导致局部液压和污染物过载,并且先前已经显示出在流出物到达地下水之前有效地影响污染物衰减污染物的能力。

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