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2017 | 26 | 3 |

Tytuł artykułu

Satellite spectral property observations in Chilean lakes

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Northern Chilean Patagonia has numerous pristine lakes associated with Nothofagus and Araucaria araucana forests. The present study looks at optical properties in visible, close, and medium infrared wavelengths in mountain lakes located in Huerquehue National Park. These lakes have associated Nothofagus and Araucaria araucana native forests with glacial origin. The satellite results revealed high reflectance values in Los Patos Lagoon to B5, B6, and B7 Landsat-8 satellite bands. This lagoon is the most ephemeral pool located within A. araucana forest, whereas Tinquilco Lake has B5, B6, and B7 low reflectance values, which would be due to the presence of Nothofagus forest and probable human intervention in its surrounding basin. Whereas Angelica, Del Sacrificio, Chico, Los Condores, Las Mercedes, Olvidada, Toro, and San Manuel lagoons have low B3, B4, B5, B6, and B7 reflectance values, which would be because of the presence of native forest in their surrounding basin, and that all of these ecosystems are permanent. These differences, in spite of the oligotrophy, would be associated with surrounding vegetation and geological characteristics of studied sites.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

26

Numer

3

Opis fizyczny

p.1413-1418,fig.,ref.

Twórcy

  • Laboratorio de Ecología Aplicada y Biodiversidad, Escuela de Ciencias Ambientales, Facultad de Recursos Naturales, Universidad Catolica de Temuco, Casilla15-D, Temuco, Chile
  • Nucleo de Estudios Ambientales, UCTemuco
autor
  • Laboratorio de Teledeteccion Satelital, Departamento de Ciencias Físicas, Facultad de Ingeniería y Ciencias, Universidad de LaFrontera, Casilla 54-D, Temuco
autor
  • Laboratorio de Ecología Aplicada y Biodiversidad, Escuela de Ciencias Ambientales, Facultad de Recursos Naturales, Universidad Catolica de Temuco, Casilla15-D, Temuco, Chile
  • Nucleo de Estudios Ambientales, UCTemuco
autor
  • Laboratorio de Teledeteccion Satelital, Departamento de Ciencias Físicas, Facultad de Ingeniería y Ciencias, Universidad de LaFrontera, Casilla 54-D, Temuco

Bibliografia

  • 1. HAUENSTEIN E., BARRIGA K., DE LOS RÍOS-ESCALANTE P. Macrophytes assemblages in mountain lakes of Huerquehue National Park (39ºS, Araucanía Region, Chile). Latin American Journal of Aquatic Research, 39, 593, 2011.
  • 2. DE LOS RÍOS-ESCALANTE P., HAUENSTEIN E., ACEVEDO P., ROMERO-MIERES M., PANDOURSKI I. Regulatory factors in crustacean zooplankton assemblages in mountain lakes of northern Chilean Patagonia (38-41° S): a comparison with Bulgarian counterparts. Latin American Journal of Aquatic Research, 40, 473, 2012.
  • 3. DE LOS RÍOS P., HAUENSTEIN E., ACEVEDO P., JAQUE X. Littoral crustaceans in mountain lakes of Huerquehue National Park (38°S, Araucania region, Chile). Crustaceana, 80, 401, 2007.
  • 4. MODENUTTI B.E., BALSEIRO E.G., QUEIMALIÑOS C.P., SUAREZ D.A., DIÉGUEZ M.C. ALBARIÑO R.J. Structure and dynamics of food webs in Andean lakes. Lak. Reserv., Res. Manage., 3, 179, 1998.
  • 5. SOTO, D. Oligotrophic patters in southern Chilean lakes: the relevance of nutrients and mixing depth. Rev. Chil. Hist. Nat., 75: 377, 2002.
  • 6. KROGH S.A., POMEROY J.W., McPHEE J., Physically based mountain hydrological modeling using reanalysis data in Patagonia. Journal of Hydrometeorology, 16: 172, 2015.
  • 7. PASQUINI A. I., DEPETRIS P. J., Southern Patagonia´s Perito Moreno Glacier, Lake Argentino and Santa Cruz river hydrological system: an overview. Journal of Hydrology, 405: 48, 2011.
  • 8. LASPOUMADERES C., MODENUTTI B., SOUZA M., BASTIDAS M., CUASSOLO F., BALSEIRO E. Glacier melting and stoichiometric implications for lake community structure: zooplankton species distributions across a natural light gradient. Global Change Biology, 19, 316, 2013.
  • 9. HYLANDER S., JEPHSON T., LEBRET, K., VON EINEM J., FAGEBERG T., BALSEIRO E., MODENUTTI B., SOUZA M., LASPOUMADERES, C., JÖHNSON M., LJUNGBERG P., NICOLLE A., NILSSON P.A., RANAKER L., HANSSON L.A. Climate-induced imput of turbid glacial meltwater affects vertical distribution and community composition of phyto- and zooplankton. Journal of Plankton Research, 33, 1239, 2011.
  • 10. DE LOS RÍOS-ESCALANTE P., ACEVEDO P. First observations on zooplankton and optical properties in a glacial north Patagonian lake (Tagua Tagua lake, 41°S Chile). Polish Journal of Environmental Studies, 25, 453, 2016.
  • 11. DE LOS RÍOS-ESCALANTE P., ACEVEDO P. First observations of Boeckella michaelseni Mrázek 1901 (Crustacea, Copepoda) and optical properties of central Patagonian lake (General Carrera Lake, 46°S Chile). Polish Journal of Environmental Studies, In press.
  • 12. DE LOS RÍOS-ESCALANTE P., QUINAN E., ACEVEDO P. Crustacean zooplankton communities in lake General Carrera (46°S) and their possible association with optical properties. Crustaceana, 86, 507, 2013.
  • 13. PHAN V.H., LINDENBERGH R., MENENTI M. Seasonal trends in Tibetan lake level changes as observed by icesat laser altimetry. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, I-7, 237, 2012.
  • 14. KUTSER T., PAAVEL B., VERPOORTER C., KAUSER T, VAHTMAE E. Remote sensing of water quality in optically complex lakes. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XXXIX-B8, 165, 2012.
  • 15. DE LOS RIOS-ESCALANTE P., PANDOURSKI I., ACEVEDO P. Spectral properties observations first comparison in Bulgarian and Chilean mountain lakes. Polish Journal of Environmental Studies, In press.
  • 16. R DEVELOPMENT CORE TEAM. 2009. R: A language and environment for statistical computing. R foundation for statistical computing, Vienna, Austria.
  • 17. EVERITT, B.S., HOTHORN, T. A handbook of Statistical Analysis using R (1st Edition). https://cran.r-project.org/web/packages/HSAUR/HSAUR.pdf (Visited 13th Jule 2016).
  • 18. PALMER S.C.J., HUNTER P.D., LANKESTER T., HUBBARD S., SPYRAKOS E., TYLER A.N., PRÉSIG M., HORVATH H., LAMB, A., BALSTER H., TOTH V.R., Validation of envisat MERIS algorithms for chlorophyll retrievan in a large turbid and optically-complex shallow lake. Remote Sensing of Environment 157, 158, 2015.
  • 19. PALMER S.C.J., KUTZER T., HUNTER P.D. Remote sensing of inland waters: challenges, progress and future directions. Remote sensing of Environment, 157,1, 2015.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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