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Geochemistry of Flood Waters from the Tar River, North Carolina Associated with Hurricane Matthew

机译:来自北卡罗来纳州塔尔河的洪水的地球化学与马修飓风相关

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Hurricane Matthew caused flooding in Eastern North Carolina that was categorized as a one in 500-year frequency event. Matthew was the second such event in less than 20 years, following Hurricane Floyd in 1999. The frequency of intense storms is projected to increase for many coastal areas, including North Carolina, because of climate change. The goal of this study was to gain a better insight into the geochemistry of flood waters associated with major flood events. Water samples ( n = 22) from the Tar River in Greenville, North Carolina were collected over a two-week period after Matthew moved across the state. Results show that total Kjeldahl nitrogen, dissolved organic carbon, phosphate, and Escherichia coli concentrations and exports were significantly ( p 0.05) higher when the river was above flood stage relative to below. Isotopic analyses of δ 15 N and δ 18 O in NO 3 in flood waters suggest that wastewater, possibly from sanitary sewer and confined animal feeding operation overflows, was the major source of nitrate associated with flood waters. Regulatory efforts to reduce nutrient loading to coastal waters may be complicated by contributions associated with intense storm events, given that such storms are becoming more frequent.
机译:马修飓风在北卡罗来纳州东部造成了洪灾,被归类为500年一次的频发事件。马修是1999年飓风弗洛伊德之后不到20年的第二次此类事件。由于气候变化,包括北卡罗来纳州在内的许多沿海地区,强烈风暴的发生率预计将增加。这项研究的目的是更好地了解与重大洪水事件相关的洪水的地球化学。马修(Matthew)穿越该州后,在两周的时间内收集了北卡罗来纳州格林维尔(Northville)的塔尔河(Tar River)的水样(n = 22)。结果表明,当河流处于洪灾以上阶段时,凯氏定氮,溶解性有机碳,磷酸盐和大肠杆菌的总浓度和出口量显着(p <0.05)高出,低于河流。洪水中NO 3中的δ15 N和δ18 O的同位素分析表明,废水(可能来自卫生污水渠和受限的动物饲养业务溢出)是与洪水有关的硝酸盐的主要来源。鉴于此类暴风雨变得越来越频繁,与强风暴事件有关的贡献可能会使减少沿海水域养分负荷的监管工作变得复杂。

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