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  • 2015-2019  (2)
  • 2018  (2)
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  • 2015-2019  (2)
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  • 2018  (2)
  • 1
    Online Resource
    Online Resource
    Wiley ; 2018
    In:  Limnology and Oceanography Vol. 63, No. 5 ( 2018-09), p. 2110-2125
    In: Limnology and Oceanography, Wiley, Vol. 63, No. 5 ( 2018-09), p. 2110-2125
    Abstract: Tidal creeks are common coastal features of low‐slope continental margins that connect nitrogen (N)‐replete watersheds to N‐limited coastal oceans. We conducted a 3‐week whole tidal creek 15 tracer labeling experiment to quantify creek‐scale inputs and transformations and to evaluate ecosystem dependence on watershed delivery. Isotopic 15 N enrichments of creek were hundreds to thousands of per mil depending on tidal stage and watershed discharge. We detected tracer movement into microalgae, macrophytes, zooplankton, epifauna, water column ammonium, and bulk sediments throughout the tidal prism. Tracer enrichment of dissolved N 2 was detected along the study reach and permitted estimation of denitrification at the whole‐system scale. All data were used to build a isotope budget to quantify whole system nitrification and to calibrate a first order biota tracer model that yielded species‐specific turnover times and estimates of how much N demand was ultimately derived from the labeled creek 15 . Combining results from the isotope budget and the biota tracer model supported the following conclusions: (1) Under base flow conditions, the watershed flux of was small compared to the amount of produced within the creek via nitrification; (2) Approximately half of all inputs to the creek were attenuated within the creek principally by biological assimilation prior to downstream transport; (3) Biological uptake reduced watershed derived loads by ∼ 50%, but the majority of their N requirement was generated within the creek.
    Type of Medium: Online Resource
    ISSN: 0024-3590 , 1939-5590
    URL: Issue
    Language: English
    Publisher: Wiley
    Publication Date: 2018
    detail.hit.zdb_id: 2033191-5
    detail.hit.zdb_id: 412737-7
    SSG: 12
    SSG: 14
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  • 2
    Online Resource
    Online Resource
    IWA Publishing ; 2018
    In:  Journal of Water and Health Vol. 16, No. 1 ( 2018-02-01), p. 78-86
    In: Journal of Water and Health, IWA Publishing, Vol. 16, No. 1 ( 2018-02-01), p. 78-86
    Abstract: Concentrated (or confined) animal feed operations (CAFOs) are the principal means of livestock production in the United States, and such facilities pollute nearby waterways because of their waste management practices; CAFO waste is pumped from the confinement structure into a cesspit and sprayed on a field. Stocking Head Creek is located in eastern North Carolina, a state with & gt;9,000,000 head of swine confined in CAFOs. This watershed contains 40 swine CAFOs; stream water quality was investigated at seven sites during 2016, with five sampling dates in early spring and five in summer. Geometric mean fecal coliform counts were in the thousands/100 mL at five sites in spring and all seven sites in summer. Excessive nitrate pollution was widespread with concentrations up to & gt;11.0 mg N/L. Seasonality played an important role in pollutant concentrations. In North Carolina, spraying animal waste on adjoining fields is permissible from March 1 through September 30. Seasonal data showed significantly higher (p & lt; 0.01) concentrations of conductivity, nitrate, total nitrogen, total organic carbon, and fecal bacteria in summer as opposed to early spring. Thus, sampling performed only in winter–early spring would significantly underestimate impacts from swine CAFO spray fields on nearby waterways.
    Type of Medium: Online Resource
    ISSN: 1477-8920 , 1996-7829
    Language: English
    Publisher: IWA Publishing
    Publication Date: 2018
    detail.hit.zdb_id: 2113236-7
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