Matches in SemOpenAlex for { <https://semopenalex.org/work/W2752630431> ?p ?o ?g. }
- W2752630431 endingPage "312" @default.
- W2752630431 startingPage "303" @default.
- W2752630431 abstract "Sediment transfer patterns during snowmelt were studied in a small Finnish agricultural watershed. Erosion rates were high as a consequence of high runoff volumes over saturated soil that partly lacked vegetation cover. Automatic high-frequency monitoring data of sediment and phosphorus concentrations in stream showed a clock-wise hysteresis loop as a dominant pattern. GIS-based modeling of runoff and soil erosion, using LiDAR DTM data, suggested that runoff and erosion mostly came from cropland that had the highest sediment contribution index. Also sediment fingerprinting with Cesium-137 suggested cropland and stream bank were the most important sources of suspended sediments in streams. Because a major part of annual sediment transfer takes place during snowmelt, it is a critical period for annual losses of pollutants. Management practices that minimize springtime sediment and pollutant losses from cropland would be needed to make a marked impact on annual pollution transfer to stream waters." @default.
- W2752630431 created "2017-09-15" @default.
- W2752630431 creator A5029471009 @default.
- W2752630431 creator A5031791599 @default.
- W2752630431 creator A5038023269 @default.
- W2752630431 creator A5042004834 @default.
- W2752630431 creator A5057664080 @default.
- W2752630431 creator A5076529753 @default.
- W2752630431 date "2018-01-01" @default.
- W2752630431 modified "2023-10-16" @default.
- W2752630431 title "Spatial modeling of sediment transfer and identification of sediment sources during snowmelt in an agricultural watershed in boreal climate" @default.
- W2752630431 cites W1483105054 @default.
- W2752630431 cites W148844362 @default.
- W2752630431 cites W1525457041 @default.
- W2752630431 cites W1595045698 @default.
- W2752630431 cites W1871478878 @default.
- W2752630431 cites W1944479826 @default.
- W2752630431 cites W1967569883 @default.
- W2752630431 cites W1968421078 @default.
- W2752630431 cites W1972289406 @default.
- W2752630431 cites W1977378148 @default.
- W2752630431 cites W1981746756 @default.
- W2752630431 cites W1983958070 @default.
- W2752630431 cites W1985430468 @default.
- W2752630431 cites W1993347723 @default.
- W2752630431 cites W2002273587 @default.
- W2752630431 cites W2003961294 @default.
- W2752630431 cites W2005303442 @default.
- W2752630431 cites W2006743951 @default.
- W2752630431 cites W2012913568 @default.
- W2752630431 cites W2015888269 @default.
- W2752630431 cites W2022106079 @default.
- W2752630431 cites W2026371727 @default.
- W2752630431 cites W2031148508 @default.
- W2752630431 cites W2035069725 @default.
- W2752630431 cites W2035193662 @default.
- W2752630431 cites W2037534727 @default.
- W2752630431 cites W2040168273 @default.
- W2752630431 cites W2044132467 @default.
- W2752630431 cites W2047622148 @default.
- W2752630431 cites W2049726374 @default.
- W2752630431 cites W2052096417 @default.
- W2752630431 cites W2054371632 @default.
- W2752630431 cites W2055208823 @default.
- W2752630431 cites W2055705976 @default.
- W2752630431 cites W2056276779 @default.
- W2752630431 cites W2057683300 @default.
- W2752630431 cites W2057768133 @default.
- W2752630431 cites W2057854790 @default.
- W2752630431 cites W2061765463 @default.
- W2752630431 cites W2065219204 @default.
- W2752630431 cites W2065821457 @default.
- W2752630431 cites W2068506530 @default.
- W2752630431 cites W2069185347 @default.
- W2752630431 cites W2094007884 @default.
- W2752630431 cites W2105909785 @default.
- W2752630431 cites W2108484081 @default.
- W2752630431 cites W2128137817 @default.
- W2752630431 cites W2130149236 @default.
- W2752630431 cites W2152373911 @default.
- W2752630431 cites W2161853023 @default.
- W2752630431 cites W2565990090 @default.
- W2752630431 cites W2594057702 @default.
- W2752630431 cites W96272827 @default.
- W2752630431 cites W2145589528 @default.
- W2752630431 doi "https://doi.org/10.1016/j.scitotenv.2017.08.142" @default.
- W2752630431 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28850850" @default.
- W2752630431 hasPublicationYear "2018" @default.
- W2752630431 type Work @default.
- W2752630431 sameAs 2752630431 @default.
- W2752630431 citedByCount "18" @default.
- W2752630431 countsByYear W27526304312018 @default.
- W2752630431 countsByYear W27526304312019 @default.
- W2752630431 countsByYear W27526304312020 @default.
- W2752630431 countsByYear W27526304312021 @default.
- W2752630431 countsByYear W27526304312022 @default.
- W2752630431 countsByYear W27526304312023 @default.
- W2752630431 crossrefType "journal-article" @default.
- W2752630431 hasAuthorship W2752630431A5029471009 @default.
- W2752630431 hasAuthorship W2752630431A5031791599 @default.
- W2752630431 hasAuthorship W2752630431A5038023269 @default.
- W2752630431 hasAuthorship W2752630431A5042004834 @default.
- W2752630431 hasAuthorship W2752630431A5057664080 @default.
- W2752630431 hasAuthorship W2752630431A5076529753 @default.
- W2752630431 hasConcept C109162521 @default.
- W2752630431 hasConcept C114793014 @default.
- W2752630431 hasConcept C118518473 @default.
- W2752630431 hasConcept C119857082 @default.
- W2752630431 hasConcept C123157820 @default.
- W2752630431 hasConcept C126589126 @default.
- W2752630431 hasConcept C127313418 @default.
- W2752630431 hasConcept C150547873 @default.
- W2752630431 hasConcept C187320778 @default.
- W2752630431 hasConcept C18903297 @default.
- W2752630431 hasConcept C2816523 @default.
- W2752630431 hasConcept C31258907 @default.
- W2752630431 hasConcept C39432304 @default.
- W2752630431 hasConcept C41008148 @default.