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Characterization of surface water isoscapes in a heterogeneous environment: The case of Scotland

  • C Birkel*
  • , R Helliwell
  • , B Thornton
  • , S Gibbs
  • , P Cooper
  • , C Soulsby
  • , D Tetzlaff
  • , Luigi Spezia
  • , G Esquivel-Hernandez
  • , R Sanchez-Murillo
  • , Midwood AJ
  • *Autore corrispondente per questo lavoro

Risultato della ricerca: Contributo in rivistaArticolo

Abstract

The extended National Waters Inventory of Scotland (NWIS) monitoring network in combination with an extensive, supplementary low flow sampling campaign was used to create isoscapes of surface water for management purposes at high spatial resolution (100 m grid) across Scotland. The δ H isoscape shows a strong isotopic separation along a north-south and east-west topographic (mountainous to the north and west and lowlands to the east) and climatic (wetter west, drier east) gradients. Isotopes were enriched in the western domain and depleted in the east and central Highland domains. The surface water d-excess isoscape show more complex spatial variability mainly related to contrasting moisture sources (sub-tropical North Atlantic Ocean, the North Sea, Polar Continental, and the Arctic) as well as secondary evaporation processes. The two-year NWIS isotope record exhibited a significant seasonal evaporative effect on surface water isotopes that progresses from winter through to a maximum in autumn as indicated by Local Evaporation Lines (LELs). The surface water isoscapes can be efficiently reproduced with geographically weighted regression (GWR) models using gridded annual precipitation, remotely sensed actual evapotranspiration, land cover, soil wetness, catchment area, and mean elevation. The GWR models showed potential to assess isotopic changes under future climate and land use change.
Lingua originaleInglese
pagine (da-a)71-80
Numero di pagine10
RivistaJournal of Geochemical Exploration
Volume194
Numero di pubblicazione194
DOI
Stato di pubblicazionePubblicato - 2018

OSS delle Nazioni Unite

Questo processo contribuisce al raggiungimento dei seguenti obiettivi di sviluppo sostenibile

  1. SDG 13 - Lotta contro il cambiamento climatico
    SDG 13 Lotta contro il cambiamento climatico
  2. SDG 15 - La vita sulla terra
    SDG 15 La vita sulla terra

All Science Journal Classification (ASJC) codes

  • Geochimica e Petrologia
  • Geologia Economica

Keywords

  • isoscapes
  • spatial models

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