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污水系统导致佛罗里达州城市化的印度河泻湖地下水的富营养化和富营养化。

Septic systems drive nutrient enrichment of groundwaters and eutrophication in the urbanized Indian River Lagoon, Florida.

机构信息

Harbor Branch Oceanographic Institute, Florida Atlantic University, 5600 US-1, Fort Pierce, FL 34946, USA.

Harbor Branch Oceanographic Institute, Florida Atlantic University, 5600 US-1, Fort Pierce, FL 34946, USA.

出版信息

Mar Pollut Bull. 2021 Nov;172:112928. doi: 10.1016/j.marpolbul.2021.112928. Epub 2021 Oct 9.

Abstract

Effluent from septic systems can pollute groundwater and surface waters in coastal watersheds. These effects are unknown for the highly urbanized central Indian River Lagoon (CIRL), Florida, where septic systems represent > 50% of wastewater disposal. To better understand these impacts, water quality was assessed along both canals and a tributary that drain into the CIRL. Dissolved nutrient concentrations were higher near septic systems than in natural areas. δN values of groundwater (+7.2‰), surface water (+5.5‰), and macrophytes (+9.7‰) were within the range for wastewater (>+3‰), as were surface water concentrations of the artificial sweetener sucralose (100 to 1700 ng/L) and fecal indicator bacteria density. These results indicate that septic systems are promoting eutrophication in the CIRL by contributing nutrient pollution to surface water via groundwater. This study demonstrates the need to reduce reliance on septic systems in urbanized coastal communities to improve water quality and subsequently mitigate harmful algal blooms.

摘要

污水系统的废水可能会污染沿海流域的地下水和地表水。这些影响在高度城市化的佛罗里达州印度河泻湖(CIRL)地区并不为人知,在该地区,污水系统代表了超过 50%的废水处理方式。为了更好地了解这些影响,对流入 CIRL 的运河和支流的水质进行了评估。与自然区域相比,污水系统附近的溶解养分浓度更高。地下水(+7.2‰)、地表水(+5.5‰)和大型植物(+9.7‰)的 δN 值在废水范围内(>+3‰),人工甜味剂三氯蔗糖的地表水浓度也是如此(100 至 1700 ng/L),以及粪便指示菌密度。这些结果表明,污水系统通过将养分污染通过地下水输送到地表水,促进了 CIRL 的富营养化。本研究表明,需要减少对城市化沿海社区中污水系统的依赖,以改善水质,从而减轻有害藻类的爆发。

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