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dc.contributorFacultad de Ciencias. Centro de Genómica, Ecología y Medio Ambiente (GEMA)es
dc.contributor.authorFrene, Cristian
dc.contributor.authorDorner, José
dc.contributor.authorZuñiga, Felipe
dc.contributor.authorCuevas, Jaime G.
dc.contributor.authorAlfaro, Fernando D. [Chile. Universidad Mayor. Facultad de Ciencias. Centro de Genómica, Ecología y Medio Ambiente]
dc.contributor.authorArmesto, Juan J.
dc.date.accessioned2021-02-25T19:12:09Z
dc.date.available2021-02-25T19:12:09Z
dc.date.issued2020-03
dc.identifier.citationFrêne, C., Dörner, J., Zúñiga, F. et al. Eco-hydrological Functions in Forested Catchments of Southern Chile. Ecosystems 23, 307–323 (2020). https://doi.org/10.1007/s10021-019-00404-7es
dc.identifier.issn1432-9840
dc.identifier.issneISSN: 1435-0629
dc.identifier.urihttp://repositorio.umayor.cl/xmlui/handle/sibum/7363
dc.identifier.urihttps://link.springer.com/article/10.1007/s10021-019-00404-7#citeas
dc.identifier.urihttps://doi-org.bibliotecadigital.umayor.cl:2443/10.1007/s10021-019-00404-7
dc.description.abstractEcosystem functions in forests can vary significantly after disturbance, depending on changes in vegetation structure during succession and soil biophysical characteristics. We examined streamflow regulation, water storage and soil protection functions in small catchments covered by evergreen temperate rain forests, developed over volcanic ash soils, in southern South America. Our aims were to understand the differences in ecosystem functioning among catchments representing different forest stages following human disturbance, from scrubland to old-growth forest condition. In these catchments (n = 3 per condition), we assessed and compared eco-hydrological functions over 21 months. In old-growth (OG) forest catchments, streamflow for the entire study period averaged 2102 +/- 110 mm, followed by secondary forest (SF) catchments with an average of 1770 +/- 284 mm and finally scrub catchments (CH) with 1684 +/- 267 mm. Evapotranspiration showed higher values in SF catchments (643 mm), followed by CH catchments (612 mm) and OG catchments (346 mm). OG and CH catchments had the lowest sediment export in streamflow, without statistical difference between them, while SF catchments had the highest sediment concentrations in all seasons of the year. Principal component analysis revealed that soil physical properties, vegetation structure and catchment morphometry were all relevant to explain the differences among the three forest successional stages compared. We validate the hypotheses that streamflow regulation and soil water storage capacity are greatly enhanced in old-growth forests, while the soil protection function is maximized in both early (bamboo-dominated) and advanced forest stages.es
dc.description.sponsorshipCF was supported by Becas CONICYT de Doctorado Nacional and by the Institute of Ecology and Biodiversity (IEB-Chile). He acknowledges the advice and support of Achim Ellies Lab, Faculty of Agricultural Sciences, and Sedimentology Lab, Faculty of Sciences, both from Universidad Austral de Chile. FDA was supported by FONDECYT 1170995. The field study was supported by grants ICM-MINECON, P05-002 and CONICYT PFB-0023 (Chile) to the Institute of Ecology and Biodiversity.es
dc.format.extent17 p., PDFes
dc.language.isoen_USes
dc.publisherSpringer New Yorkes
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Chilees
dc.sourceEcosystems 23, 307–323 (2020)
dc.subjectECOSYSTEMSes
dc.subjectBIOGEOCHEMISTRYes
dc.subjectDISTURBANCESes
dc.subjectDISCHARGEes
dc.titleEco-hydrological Functions in Forested Catchments of Southern Chilees
dc.typeArtículo o Paperes
umayor.facultadCIENCIAS
umayor.indizadorCOTes
umayor.politicas.sherpa/romeoLicence CC BY. Disponible en: https://v2.sherpa.ac.uk/id/publication/16650es
umayor.indexadoWeb of Sciencees
umayor.indexadoWOS:000520408600006
dc.identifier.doi10.1007/s10021-019-00404-7
umayor.indicadores.wos-(cuartil)Q1
umayor.indicadores.scopus-(scimago-sjr)SCIMAGO/ INDICE H: 140 H
umayor.indicadores.scopus-(scimago-sjr)SJR 1.88


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