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使用SWAT模型模拟大都市亚特兰大城市流域内现场污水处理系统对硝酸盐负荷的影响

Modeling the Effects of Onsite Wastewater Treatment Systems on Nitrate Loads Using SWAT in an Urban Watershed of Metropolitan Atlanta.

作者信息

Hoghooghi Nahal, Radcliffe David E, Habteselassie Mussie Y, Jeong Jaehak

出版信息

J Environ Qual. 2017 May;46(3):632-640. doi: 10.2134/jeq2016.08.0322.

Abstract

Onsite wastewater treatment systems (OWTSs) can be a source of nitrogen (N) pollution in both surface and ground waters. In metropolitan Atlanta, GA, >26% of homes are on OWTSs. In a previous article, we used the Soil Water Assessment Tool to model the effect of OWTSs on stream flow in the Big Haynes Creek Watershed in metropolitan Atlanta. The objective of this study was to estimate the effect of OWTSs, including failing systems, on nitrate as N (NO-N) load in the same watershed. Big Haynes Creek has a drainage area of 44 km with mainly urban land use (67%), and most of the homes use OWTSs. A USGS gauge station where stream flow was measured daily and NO-N concentrations were measured monthly was used as the outlet. The model was simulated for 12 yr. Overall, the model showed satisfactory daily stream flow and NO-N loads with Nash-Sutcliffe coefficients of 0.62 and 0.58 for the calibration period and 0.67 and 0.33 for the validation period at the outlet of the Big Haynes Watershed. Onsite wastewater treatment systems caused an average increase in NO-N load of 23% at the watershed scale and 29% at the outlet of a subbasin with the highest density of OWTSs. Failing OWTSs were estimated to be 1% of the total systems and did not have a large impact on stream flow or NO-N load. The NO-N load was 74% of the total N load in the watershed, indicating the important effect of OWTSs on stream loads in this urban watershed.

摘要

现场污水处理系统(OWTSs)可能是地表水和地下水中氮(N)污染的一个来源。在佐治亚州的大都市亚特兰大,超过26%的家庭使用现场污水处理系统。在之前的一篇文章中,我们使用土壤水评估工具对现场污水处理系统对大都市亚特兰大大海恩斯溪流域溪流流量的影响进行了建模。本研究的目的是估计现场污水处理系统,包括故障系统,对同一流域中硝态氮(NO-N)负荷的影响。大海恩斯溪的流域面积为44平方公里,主要为城市土地利用(67%),并且大多数家庭使用现场污水处理系统。一个美国地质调查局的测量站被用作流域出口,该测量站每天测量溪流流量,每月测量NO-N浓度。该模型进行了12年的模拟。总体而言,该模型显示出令人满意的每日溪流流量和NO-N负荷,在大海恩斯溪流域出口处,校准期的纳什-萨特克利夫系数分别为0.62和0.58,验证期为0.67和0.33。现场污水处理系统在流域尺度上使NO-N负荷平均增加了23%,在现场污水处理系统密度最高的一个子流域出口处增加了29%。估计故障的现场污水处理系统占系统总数的1%,对溪流流量或NO-N负荷没有很大影响。NO-N负荷占流域总氮负荷的74%,表明现场污水处理系统对这个城市流域的溪流负荷有重要影响。

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