• norsk
    • English
  • norsk 
    • norsk
    • English
  • Logg inn
Vis innførsel 
  •   Hjem
  • Norsk institutt for vannforskning
  • Publikasjoner fra Cristin - NIVA
  • Vis innførsel
  •   Hjem
  • Norsk institutt for vannforskning
  • Publikasjoner fra Cristin - NIVA
  • Vis innførsel
JavaScript is disabled for your browser. Some features of this site may not work without it.

Current Browning of Surface Waters Will Be Further Promoted by Wetter Climate

de Wit, Heleen A.; Valinia, Salar; Weyhenmeyer, Gesa A; Futter, Martyn N.; Kortelainen, Pirkko; Austnes, Kari; Hessen, Dag O; Raike, Antti; Laudon, Hjalmar; Vournenmaa, Jussi
Journal article, Peer reviewed
Published version
Thumbnail
Åpne
de Wit et al. 2016 Article 10.1021/acs.estlett.6b00396 (2.613Mb)
Permanent lenke
http://hdl.handle.net/11250/2566900
Utgivelsesdato
2016
Metadata
Vis full innførsel
Samlinger
  • Publikasjoner fra Cristin - NIVA [1757]
  • Scientific publications [943]
Originalversjon
Environmental Science and Technology Letters. 2016, 3 (12), 430-435.   10.1021/acs.estlett.6b00396
Sammendrag
Browning of surface waters because of increasing terrestrial dissolved organic carbon (OC) concentrations is a concern for drinking water providers and can impact land carbon storage. We show that positive trends in OC in 474 streams, lakes, and rivers in boreal and subarctic ecosystems in Norway, Sweden, and Finland between 1990 and 2013 are surprisingly constant across climatic gradients and catchment sizes (median, +1.4% year–1; interquartile range, +0.8–2.0% year–1), implying that water bodies across the entire landscape are browning. The largest trends (median, +1.7% year–1) were found in regions impacted by strong reductions in sulfur deposition, while subarctic regions showed the least browning (median, +0.8% year–1). In dry regions, precipitation was a strong and positive driver of OC concentrations, declining in strength moving toward high rainfall sites. We estimate that a 10% increase in precipitation will increase mobilization of OC from soils to freshwaters by at least 30%, demonstrating the importance of climate wetting for the carbon cycle. We conclude that upon future increases in precipitation, current browning trends will continue across the entire aquatic continuum, requiring expensive adaptations in drinking water plants, increasing land to sea export of carbon, and impacting aquatic productivity and greenhouse gas emissions.
Beskrivelse
This is an open access article published under an ACS AuthorChoice License, which permits copying and redistribution of the article or any adaptations for non-commercial purposes. https://pubs.acs.org/page/policy/authorchoice_termsofuse.html
Utgiver
American Chemical Society
Tidsskrift
Environmental Science and Technology Letters
Opphavsrett
© 2016 American Chemical Society

Kontakt oss | Gi tilbakemelding

Personvernerklæring
DSpace software copyright © 2002-2019  DuraSpace

Levert av  Unit
 

 

Bla i

Hele arkivetDelarkiv og samlingerUtgivelsesdatoForfattereTitlerEmneordDokumenttyperTidsskrifterDenne samlingenUtgivelsesdatoForfattereTitlerEmneordDokumenttyperTidsskrifter

Min side

Logg inn

Statistikk

Besøksstatistikk

Kontakt oss | Gi tilbakemelding

Personvernerklæring
DSpace software copyright © 2002-2019  DuraSpace

Levert av  Unit