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沿地中海河流的营养污染物负荷及来源分配。

Nutrient pollutant loading and source apportionment along a Mediterranean river.

机构信息

Department of Civil and Environmental Engineering, Maroun Semaan Faculty of Engineering and Architecture, American University of Beirut, P.O. Box 11-0236, Riad el Solh, Beirut, 1107 2020, Lebanon.

Department of Environmental Health, American University of Beirut, Bliss Street, Beirut, Lebanon.

出版信息

Environ Monit Assess. 2020 Apr 8;192(5):274. doi: 10.1007/s10661-020-8220-7.

Abstract

Rivers are increasingly being subjected to increased anthropogenic pollution stresses that undermine their designated uses and negatively affect sensitive coastal regions. The degradation of river water quality is attributed to both point and nonpoint sources of pollution. In this study, we determine the relative contribution of point and nonpoint pollutant loads in the Beirut River basin, a poorly monitored seasonal Mediterranean river. Water quality samples were collected on a weekly basis over 2 consecutive years (2016 and 2017) from four sampling sites that represent a gradient of increasing urbanization. Flow-concentration models were first developed to estimate total phosphorus (TP), total nitrogen (TN), and total suspended solids (TSS) loads reaching the different sub-basins. The performance of the regression models varied by location and by pollutant, with improved performance in the downstream sections (adjusted R 66% for TP and 59% for TN). Loads were also determined using the Beale's ratio method, which generally underestimated the loads as compared with the regression-based models. The relative contribution of the nonpoint source loads were then quantified using the Open Nonpoint Source Pollution and Erosion Comparison Tool (OpenNSPECT). The results showed that point sources were the main cause of water quality impairment across the entire basin, with load contributions varying between 75% in the headwaters and 98% in the urbanized downstream sections. The adopted modeling approach in this study provides an opportunity to better understand pollutant load dynamics in poorly monitored basins and a mechanism to apportion pollution loads between point and nonpoint sources.

摘要

河流正日益受到人为污染的影响,这些污染破坏了河流的原有功能,对敏感的沿海地区产生了负面影响。河流水质的恶化是由点源和非点源污染共同造成的。本研究旨在确定贝鲁特河流域(一个监测较差的季节性地中海河流)中,点源和非点源污染物负荷的相对贡献。在连续两年(2016 年和 2017 年)中,每周从四个采样点采集水质样本,这些采样点代表了城市化程度逐渐增加的梯度。首先建立流量-浓度模型来估算到达不同子流域的总磷(TP)、总氮(TN)和总悬浮固体(TSS)负荷。回归模型的性能因位置和污染物而异,下游部分的性能有所提高(TP 的调整 R²为 66%,TN 的调整 R²为 59%)。还使用 Beale 比法确定了负荷,与基于回归的模型相比,该方法通常低估了负荷。然后使用 OpenNSPECT 量化非点源负荷的相对贡献。结果表明,点源是整个流域水质恶化的主要原因,负荷贡献在源头处为 75%,在城市化的下游处为 98%。本研究采用的建模方法为更好地了解监测较差的流域中的污染物负荷动态提供了机会,并为区分点源和非点源污染提供了一种机制。

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