Matches in SemOpenAlex for { <https://semopenalex.org/work/W2766267908> ?p ?o ?g. }
- W2766267908 endingPage "9756" @default.
- W2766267908 startingPage "9740" @default.
- W2766267908 abstract "Abstract Nonpoint pollution sources are strongly influenced by hydrology and are therefore sensitive to climate variability. Some pollutants entering aquatic ecosystems, e.g., nitrate, can be mitigated by in‐stream processes during transport through river networks. Whole river network nitrate retention is difficult to quantify with observations. High frequency, in situ nitrate sensors, deployed in nested locations within a single watershed, can improve estimates of both nonpoint inputs and aquatic retention at river network scales. We deployed a nested sensor network and associated sampling in the urbanizing Oyster River watershed in coastal New Hampshire, USA, to quantify storm event‐scale loading and retention at network scales. An end member analysis used the relative behavior of reactive nitrate and conservative chloride to infer river network fate of nitrate. In the headwater catchments, nitrate and chloride concentrations are both increasingly diluted with increasing storm size. At the mouth of the watershed, chloride is also diluted, but nitrate tended to increase. The end member analysis suggests that this pattern is the result of high retention during small storms (51–78%) that declines to zero during large storms. Although high frequency nitrate sensors did not alter estimates of fluxes over seasonal time periods compared to less frequent grab sampling, they provide the ability to estimate nitrate flux versus storm size at event scales that is critical for such analyses. Nested sensor networks can improve understanding of the controls of both loading and network scale retention, and therefore also improve management of nonpoint source pollution." @default.
- W2766267908 created "2017-11-10" @default.
- W2766267908 creator A5004179339 @default.
- W2766267908 creator A5022117039 @default.
- W2766267908 creator A5068028821 @default.
- W2766267908 creator A5086257126 @default.
- W2766267908 date "2017-11-01" @default.
- W2766267908 modified "2023-09-26" @default.
- W2766267908 title "Aquatic Nitrate Retention at River Network Scales Across Flow Conditions Determined Using Nested In Situ Sensors" @default.
- W2766267908 cites W1589376270 @default.
- W2766267908 cites W1930996030 @default.
- W2766267908 cites W1952040787 @default.
- W2766267908 cites W1971336148 @default.
- W2766267908 cites W2002346456 @default.
- W2766267908 cites W2003912780 @default.
- W2766267908 cites W2025255202 @default.
- W2766267908 cites W2034455891 @default.
- W2766267908 cites W2057707765 @default.
- W2766267908 cites W2058395400 @default.
- W2766267908 cites W2075711516 @default.
- W2766267908 cites W2077541573 @default.
- W2766267908 cites W2081553277 @default.
- W2766267908 cites W2084262312 @default.
- W2766267908 cites W2095222099 @default.
- W2766267908 cites W2101791894 @default.
- W2766267908 cites W2112448118 @default.
- W2766267908 cites W2112863519 @default.
- W2766267908 cites W2124601100 @default.
- W2766267908 cites W2125454074 @default.
- W2766267908 cites W2132514583 @default.
- W2766267908 cites W2135003112 @default.
- W2766267908 cites W2138436021 @default.
- W2766267908 cites W2145402321 @default.
- W2766267908 cites W2148492494 @default.
- W2766267908 cites W2149177162 @default.
- W2766267908 cites W2165360549 @default.
- W2766267908 cites W2217350502 @default.
- W2766267908 cites W2323110839 @default.
- W2766267908 cites W2516255137 @default.
- W2766267908 cites W2767511936 @default.
- W2766267908 doi "https://doi.org/10.1002/2017wr020644" @default.
- W2766267908 hasPublicationYear "2017" @default.
- W2766267908 type Work @default.
- W2766267908 sameAs 2766267908 @default.
- W2766267908 citedByCount "50" @default.
- W2766267908 countsByYear W27662679082018 @default.
- W2766267908 countsByYear W27662679082019 @default.
- W2766267908 countsByYear W27662679082020 @default.
- W2766267908 countsByYear W27662679082021 @default.
- W2766267908 countsByYear W27662679082022 @default.
- W2766267908 countsByYear W27662679082023 @default.
- W2766267908 crossrefType "journal-article" @default.
- W2766267908 hasAuthorship W2766267908A5004179339 @default.
- W2766267908 hasAuthorship W2766267908A5022117039 @default.
- W2766267908 hasAuthorship W2766267908A5068028821 @default.
- W2766267908 hasAuthorship W2766267908A5086257126 @default.
- W2766267908 hasBestOaLocation W27662679081 @default.
- W2766267908 hasConcept C105306849 @default.
- W2766267908 hasConcept C111368507 @default.
- W2766267908 hasConcept C119857082 @default.
- W2766267908 hasConcept C127313418 @default.
- W2766267908 hasConcept C150547873 @default.
- W2766267908 hasConcept C175327387 @default.
- W2766267908 hasConcept C179006392 @default.
- W2766267908 hasConcept C187320778 @default.
- W2766267908 hasConcept C18903297 @default.
- W2766267908 hasConcept C2776384668 @default.
- W2766267908 hasConcept C2780797713 @default.
- W2766267908 hasConcept C39432304 @default.
- W2766267908 hasConcept C41008148 @default.
- W2766267908 hasConcept C76886044 @default.
- W2766267908 hasConcept C86803240 @default.
- W2766267908 hasConceptScore W2766267908C105306849 @default.
- W2766267908 hasConceptScore W2766267908C111368507 @default.
- W2766267908 hasConceptScore W2766267908C119857082 @default.
- W2766267908 hasConceptScore W2766267908C127313418 @default.
- W2766267908 hasConceptScore W2766267908C150547873 @default.
- W2766267908 hasConceptScore W2766267908C175327387 @default.
- W2766267908 hasConceptScore W2766267908C179006392 @default.
- W2766267908 hasConceptScore W2766267908C187320778 @default.
- W2766267908 hasConceptScore W2766267908C18903297 @default.
- W2766267908 hasConceptScore W2766267908C2776384668 @default.
- W2766267908 hasConceptScore W2766267908C2780797713 @default.
- W2766267908 hasConceptScore W2766267908C39432304 @default.
- W2766267908 hasConceptScore W2766267908C41008148 @default.
- W2766267908 hasConceptScore W2766267908C76886044 @default.
- W2766267908 hasConceptScore W2766267908C86803240 @default.
- W2766267908 hasFunder F4320306076 @default.
- W2766267908 hasFunder F4320310373 @default.
- W2766267908 hasIssue "11" @default.
- W2766267908 hasLocation W27662679081 @default.
- W2766267908 hasLocation W27662679082 @default.
- W2766267908 hasOpenAccess W2766267908 @default.
- W2766267908 hasPrimaryLocation W27662679081 @default.
- W2766267908 hasRelatedWork W1987733670 @default.
- W2766267908 hasRelatedWork W2011371410 @default.
- W2766267908 hasRelatedWork W2022169088 @default.
- W2766267908 hasRelatedWork W2055705976 @default.