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CHARACTERIZATION OF ON-SITE WASTEWATER NITROGEN PLUMES IN SHALLOW COASTAL AQUIFERS, NORTH CAROLINA

机译:北卡罗莱纳州浅层沿海含水层中的现场废水氮柱特征

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On-site wastewater (septic) systems have often been implicated as a source of high nitrogen content in groundwater in Eastern North Carolina. At the national level, the Centers for Disease Control and Prevention (CDC) pointed out the need for enhancing the knowledge of septic systems performance. This paper is part of a study that was designed to address that need. The objectives of this work were to determine if electrical resistivity mapping is an applicable technique for characterizing septic system effluent plumes in sandy soils and to investigate the links between septic system discharge, groundwater quality, and potential contributions to surface waters.Electrical resistivity surveys were completed on two sites that use septic systems in Washington, North Carolina. Plumes of low resistivity groundwater were identified at both sites. Orientation of the plumes matched closely with the direction of groundwater flow away from the septic systems as indicated by groundwater level data from piezometers. Preliminary data of samples taken from each septic tank showed total nitrogen concentrations between 46 and 48 mg/1, mostly in the forms of organic nitrogen and ammonium nitrogen (NH4-N). Also, preliminary data showed higher concentrations of nitrate nitrogen (NO_3-N) and organic nitrogen in shallow groundwater samples adjacent to septic systems than in background samples. While dissolved nitrogen concentrations typically decreased as the plumes moved further away from the systems, elevated nitrogen concentrations were seen close to the estuary at one site. Future work will include septic tank and groundwater N-isotope sampling and installation of YSI sondes (automated NO3-N and NH_4-N sensors), to gain more information on N-processing and the fate and transport of dissolved nitrogen in shallow coastal aquifers.
机译:在北卡罗来纳州东部,现场废水(化粪池)系统经常被认为是地下水中高氮含量的来源。在国家一级,疾病控制和预防中心(CDC)指出需要增强对化粪池系统性能的了解。本文是旨在解决这一需求的研究的一部分。这项工作的目的是确定电阻率测绘是否是表征沙质土壤中化粪池系统污水羽流的适用技术,并研究化粪池系统排放,地下水质量以及对地表水的潜在影响之间的联系。 在北卡罗来纳州华盛顿的两个使用化粪池系统的地点完成了电阻率调查。在两个地点都发现了低电阻率的地下水。压力计的地下水位数据表明,羽流的方向与远离化粪池系统的地下水流方向紧密匹配。从每个化粪池中采集的样品的初步数据显示,总氮浓度在46至48 mg / 1之间,主要为有机氮和铵态氮(NH4-N)的形式。此外,初步数据显示,与化粪池系统相邻的浅层地下水样品中的硝酸盐氮(NO_3-N)和有机氮浓度高于背景样品。尽管随着羽流进一步远离系统,溶解的氮浓度通常会降低,但在一个站点附近的河口附近却发现氮浓度升高。未来的工作将包括化粪池和地下水的N同位素采样,以及安装YSI探测仪(自动NO3-N和NH_4-N传感器),以获取有关N处理以及沿海浅层含水层中的氮的去向和运移的更多信息。

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