Simulation of Groundwater Flow and Contaminant Transport in Eastern Sussex County, Delaware With Emphasis on Impacts of Spray Irrigation of Treated Wastewater

Author(s)He, C.
Author(s)Andres, A.S.
Date Accessioned2015-09-04T19:09:02Z
Date Available2015-09-04T19:09:02Z
Publication Date2015-08
AbstractThis report presents a conceptual model of groundwater flow and the effects of nitrate (NO3-) loading and transport on shallow groundwater quality in a portion of the Indian River watershed, eastern Sussex County, Delaware. Three-dimensional, numerical simulations of groundwater flow, particle tracking, and contaminant transport were constructed and tested against data collected in previous hydrogeological and water-quality studies. The simulations show a bimodal distribution of groundwater residence time in the study area, with the largest grouping at less than 10 years, the second largest grouping at more than 100 years, and a median of approximately 29 years. Historically, the principal source of nitrate to the shallow groundwater in the study area has been from the chemical- and manure-based fertilizers used in agriculture. A total mass of NO3- -nitrogen (N) of about 169 kg/day is currently simulated to discharge to surface water. As the result of improved N-management practices, after 45 years a 20 percent decrease in the mass of NO3- -N reaching the water table would result in an approximately 4 percent decrease in the mass of simulated N discharge to streams. The disproportionally smaller decrease in N discharge reflects the large mass of N in the aquifer coupled with long groundwater residence times. Currently, there are two large wastewater spray irrigation facilities located in the study domain: the Mountaire Wastewater Treatment Facility and Inland Bays Wastewater Facility. The effects of wastewater application through spray irrigation were simulated with a two-step process. First, under different operations and soil conditions, evaporation and water flux, NO3- -N uptake by plants, and NO3- -N leaching were simulated using an unsaturated flow model, Hydrus-1D. Next, the range of simulated NO3- -N loads were input into the flow and transport model to study the impacts on groundwater elevation and NO3- -N conditions. Over the long term, the spray irrigation of wastewater may increase water-table elevations up to 2.5m and impact large volumes of groundwater with NO3-. Reducing the concentration of NO3- in effluent and increasing the irrigation rate may reduce the volumes of water impacted by high concentrations of NO3-, but may facilitate the lateral and vertical migration of NO3-. Simulations indicate that NO3- will eventually impact deeper aquifers. An optimal practice of wastewater irrigation can be achieved by adjusting irrigation rate and effluent concentration. Further work is needed to determine these optimum application rates and concentrations.en_US
URLhttp://udspace.udel.edu/handle/19716/17012
Languageen_USen_US
PublisherNewark, DE: Delaware Geological Survey, University of Delawareen_US
Part of SeriesReport of Investigations;
Part of Series;79
Keywordsaquiferen_US
KeywordsBeaverdam Formationen_US
KeywordsBethany Formationen_US
KeywordsCat Hill Formationen_US
KeywordsChoptank Formationen_US
Keywordscoastal geologyen_US
KeywordsColumbia aquiferen_US
Keywordscontaminantsen_US
Keywordsenvironmental sensorsen_US
Keywordsgeochemistryen_US
Keywordsgroundwateren_US
Keywordsgroundwater monitoringen_US
Keywordshazardsen_US
KeywordsHoloceneen_US
KeywordsIndian Riveren_US
KeywordsIndian River Bayen_US
KeywordsInland Baysen_US
KeywordsLynch Heights Formationen_US
KeywordsManokin aquiferen_US
KeywordsMilford aquiferen_US
KeywordsMillsboroen_US
Keywordsmodelingen_US
Keywordsnitrateen_US
Keywordsnitrogenen_US
KeywordsPlioceneen_US
KeywordsPocomoke aquiferen_US
KeywordsRehoboth Bayen_US
KeywordsScotts Corners Formationen_US
KeywordsSt. Marys Formationen_US
Keywordsstratigraphyen_US
Keywordssubsurfaceen_US
Keywordssurface wateren_US
KeywordsSussex Countyen_US
Keywordswastewateren_US
Keywordswater resourcesen_US
Keywordswellsen_US
KeywordsMioceneen_US
KeywordsPleistoceneen_US
TitleSimulation of Groundwater Flow and Contaminant Transport in Eastern Sussex County, Delaware With Emphasis on Impacts of Spray Irrigation of Treated Wastewateren_US
TypeTechnical Reporten_US
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