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Fate of individual sewage disposal system wastewater within regolith in mountainous terrain

机译:山区地形中碎屑岩内单个污水处理系统废水的去向

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In order to improve understanding of the fate of septic tank or individual sewage disposal system (ISDS) effluent in regolith overlying fractured-rock aquifers, effluent from an ISDS in such a setting was tracked via geophysical, hydrological, and geochemical methods. Under typical precipitation conditions, the effluent entered the fractured bedrock within 5 m of the boundary of the constructed infiltration area. During a period of unusually high spring recharge, the plume migrated between 50 and 100 m within the regolith before infiltrating the fractured bedrock. The chemical signature of the effluent is similar to that required to account for the decline in water quality, suggesting a causative relationship (as estimated from mass-balance models of the surface-water chemistry near the mouth of the basin). The elevated salt content of the effluent during periods of high natural recharge to the infiltration area correlates with elevated salt concentrations in surface and groundwater at the basin scale, suggesting that some of the effluent salt load may be stored in the unsaturated zone during dry periods and flushed during periods of elevated natural recharge.
机译:为了更好地了解化石池或单个污水处理系统(ISDS)流出物在碎裂岩含水层上方的粉煤灰中的命运,通过地球物理,水文和地球化学方法跟踪了这种情况下来自ISDS的流出物。在典型的降水条件下,流出物在已建渗透区域边界的5 m内进入裂缝的基岩。在春季补给异常高的时期,烟羽在侵入碎裂的基岩之前在重石块内迁移了50至100 m。废水的化学特征类似于解释水质下降所需的化学特征,表明存在因果关系(根据流域口附近的地表水化学物质的质量平衡模型估算)。在自然高度补给入渗区期间,污水中盐分含量的升高与流域规模的地表水和地下水中盐分含量的升高有关,这表明在干旱时期,某些污水盐分的负荷可能存储在非饱和区中。在自然补给量升高时冲洗。

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