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Buffer distances for on-site sewage systems in Sydney's drinking water catchments

机译:悉尼饮用水集水区现场污水处理系统的缓冲距离

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摘要

Pathogens and nutrients released from on-site sewage systems represent a risk to surface and ground water quality, particularly where there are sensitive receiving waters such as in drinking water catchments. Buffer zones between on-site systems and waterways are one barrier used to protect water quality. The increased time and distance they provide increases the opportunities for the effluent purification functions of the soil to occur. A risk management model is proposed to assess the efficacy of the buffer zones in Sydney's drinking water catchments. The model is the basis for the development of performance based setback distances for on-site systems from waterways, and incorporates stochastic analysis of pathogen and nutrient transport in the environment and consideration of the effluent quality variability from on-site systems. Catchment-scale integration of contaminant transport is-employed to facilitate a risk assessment of on-site systems. The risk management model also allows for the impact of on-site system management and maintenance on catchment water quality to be assessed through scenario building and feedback mechanisms. [References: 16]
机译:现场污水系统释放的病原体和营养物质对地表水和地下水水质构成风险,尤其是在有敏感的接收水的地方,例如饮用水集水区。现场系统和水道之间的缓冲区是用来保护水质的一种屏障。它们提供的增加的时间和距离增加了土壤污水净化功能发生的机会。提出了一种风险管理模型来评估悉尼饮用水流域缓冲区的效力。该模型是开发基于性能的,距水道的现场系统的后退距离的基础,并结合了环境中病原体和营养物运输的随机分析,并考虑了现场系统的出水水质可变性。采用集水规模的污染物运输整合,以促进现场系统的风险评估。风险管理模型还允许通过情景构建和反馈机制评估现场系统管理和维护对集水水质的影响。 [参考:16]

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