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Barnegat Bay-Little Egg Harbor Estuary: Case study of a highly eutrophic coastal bay system

机译:Barnegat海湾-小蛋港河口:高度富营养化的沿海海湾系统的案例研究

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The Barnegat Bay-Little Egg Harbor Estuary is classified here as a highly eutrophic estuary based on application of the National Oceanic and Atmospheric Administration's National Estuarine Eutrophication Assessment model. Because it is shallow, poorly flushed, and bordered by highly developed watershed areas, the estuary is particularly susceptible to the effects of nutrient loading. Most of this load (similar to 50%) is from surface water inflow, but substantial fractions also originate from atmospheric deposition (similar to 39%), and direct groundwater discharges (similar to 11%). No point source inputs of nutrients exist in the Barnegat Bay watershed. Since 1980, all treated wastewater from the Ocean County Utilities Authority's regional wastewater treatment system has been discharged 1.6 km offshore in the Atlantic Ocean. Eutrophy causes problems in this system, including excessive micro- and macroalgal growth, harmful algal blooms, altered benthic invertebrate communities, impacted harvestable fisheries, and loss of essential habitat (i.e., seagrass and shellfish beds). Similar problems are evident in other shallow lagoonal estuaries of the Mid-Atlantic and South Atlantic regions. To effectively address nutrient enrichment problems in the Barnegat Bay-Little Egg Harbor Estuary, it is important to determine the nutrient loading levels that produce observable impacts in the system. It is also vital to continually monitor and assess priority indicators of water quality change and estuarine health. In addition, the application of a new generation of innovative models using web-based tools (e.g., NLOAD) will enable researchers and decision-makers to more successfully manage nutrient loads from the watershed. Finally, the implementation of storm water retrofit projects should have beneficial effects on the system.
机译:根据国家海洋和大气管理局的国家河口富营养化评估模型,Barnegat湾-小蛋港河口在此被归类为高度富营养化的河口。由于河口较浅,冲刷较差,并与高度发达的集水区接壤,因此河口特别容易受到养分负荷的影响。大部分负荷(约占50%)来自地表水流入,但很大一部分还来自大气沉积(约占39%)和直接的地下水排放(约占11%)。 Barnegat海湾流域没有养分的点源输入。自1980年以来,大洋县公用事业局区域废水处理系统的所有处理废水已在大西洋沿岸1.6公里处排放。富营养化会导致该系统出现问题,包括微藻和大型藻类过度生长,有害藻类大量繁殖,底栖无脊椎动物群落改变,可捕捞渔业受到影响以及基本生境(即海草和贝类床)丧失。类似的问题在中大西洋和南大西洋地区的其他浅泻湖河口中也很明显。为了有效解决Barnegat湾-小蛋港河口中的养分富集问题,确定在系统中产生可观察到影响的养分含量很重要。持续监测和评估水质变化和河口健康的优先指标也至关重要。此外,使用基于Web的工具(例如NLOAD)的新一代创新模型的应用将使研究人员和决策者能够更成功地管理流域的营养负荷。最后,雨水改造项目的实施应该对系统产生有益的影响。

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