153
Views
8
CrossRef citations to date
0
Altmetric
Articles

Isotopic composition and hydrogeochemistry of a periglacial Andean catchment and its relevance in the knowledge of water resources in mountainous areas

ORCID Icon, ORCID Icon & ORCID Icon
Pages 480-494 | Received 11 Feb 2020, Accepted 30 Jul 2020, Published online: 21 Sep 2020

References

  • Dapeña C. Isótopos Ambientales livianos: su aplicación en hidrología e hidrogeología [dissertation]. Buenos Aires: University of Buenos Aires (UBA); 2008. Spanish.
  • Fritz P, Fontes JC. editors. Handbook of environmental isotope geochemistry. The terrestrial environment, A. Volume 1. Amsterdam: Elsevier; 1980.
  • Gat J, Gonfiantini R, editors. Stable isotope hydrology: deuterium and oxygen in the water cycle. Vienna: International Atomic Energy Agency; 1981 (Technical Reports Series; N° 210).
  • IAEA. Guidebook on nuclear techniques in hydrology. Vienna: International Atomic Energy Agency; 1983; (Technical Reports Series; N° 91).
  • Clark ID, Fritz P. Environmental isotopes in hydrogeology. New York: Lewis Publishers CRC Press; 1997.
  • Kendall C, McDonnell JJ. Isotope tracers in catchment hydrology. Amsterdam: Elsevier Science BV; 1998.
  • Mook WG, editor. Environmental isotopes in the hydrological cycle: principles and applications. Paris: UNESCO; 2002. (IHP-V Technical Documents in Hydrology).
  • Fontes JC. Environmental isotopes in groundwater hydrology. In: Fritz P, Fontes JC, editor. Handbook of environmental isotope geochemistry. The terrestrial environment, A. Amsterdam: Elsevier; 1980. p. 75–140.
  • Quiroz O, Martínez D, Dapeña C, et al. Hydrogeochemical and isotopic tools to study groundwater flow in low gradient catchments. study cases in the province of Buenos Aires, Argentina. Hydrogeol J. 2008;16(6):1113–1127. doi: 10.1007/s10040-008-0289-y
  • Ohlanders N, Rodriguez M, McPhee J. Stable water isotope variation in a Central Andean watershed dominated by glacier and snowmelt. Hydrol Earth Syst Sci. 2013;17:1035–1050. doi: 10.5194/hess-17-1035-2013
  • Candel J, Brooks E, Sánchez-Murillo R, et al. Identifying groundwater recharge connections in the Moscow (USA) sub-basin using isotopic tracers and a soil moisture routing model. Hydrogeol J. 2016;24:1739–1751. doi: 10.1007/s10040-016-1431-x
  • Fritz P, Susuki O, Silva C, et al. Isotope hydrology of groundwaters in the Pampa del Tamarugal, Chile. J Hydrol. 1981;53(1–2):164–184. doi: 10.1016/0022-1694(81)90043-3
  • Magaritz M, Aravena R, Pefia H, et al. Water chemistry and isotope study of streams and springs in northern Chile. J Hydrol. 1989;108:323–341. doi: 10.1016/0022-1694(89)90292-8
  • Panarello HO, Dapeña C. Mecanismos de recarga y salinización en las cuencas de los ríos Mendoza y Tunuyán, Mendoza, República Argentina: evidenciados por isótopos ambientales. In: Sociedad Geológica Boliviana editor. Proceedings of Memorias del XII Congreso Geológico Bolivia; 1996, October 10–13; Tarija (Bolivia): II:531–543. Spanish.
  • Massone H, Martinez D, Vich A, et al. Snowmelt contribution to the sustainability of the irrigated Mendoza’s Oasis, Argentina: an isotope study. Environ Earth Sci. 2016;75:520. doi: 10.1007/s12665-015-5141-9
  • Crespo SA, Aranibar JN, Gomez ML, et al. Ionic and stable isotope chemistry as indicators of water sources to the upper Mendoza river basin, Central Andes of Argentina. Hydrol Sci J. 2017;62(4):588–605. doi: 10.1080/02626667.2016.1252840
  • Trombotto Liaudat D, Wainstein P, Arenson LU.Mazzini Vazquez, editor. Guía terminológica de la geocriología sudamericana. Mendoza (Argentina): Fundación de Historia Natural Félix de Azara; 2014; Spanish.
  • O’Connor MT, Cardenas MB, Neilson BT, et al. Active layer groundwater flow: the interrelated effects of stratigraphy, thaw, and topography. Water Resour Res. 2019;55(8):6555–6576. doi: 10.1029/2018WR024636
  • Barsch D. Rockglaciers. Berlin: Springer; 1996.
  • Trombotto D, Sileo N, Dapeña C. Periglacial water paths within a rock glacier dominated catchment in the Stepanek area, Central Andes, Mendoza, Argentina. Permafr Periglac Process. 2020;31(2):311–323. doi: 10.1002/ppp.2044
  • Sileo N. Estudio del comportamiento hidrogeoquímico de las aguas subterráneas y superficiales relacionadas con glaciares, glaciares cubiertos y glaciares de escombros, en la cuenca del río Vallecitos, Cordillera Frontal, Mendoza [dissertation]. Buenos Aires: University of Buenos Aires (UBA); 2019. Spanish.
  • Harris I, Jones PD, Osborn TJ, et al. Updated high-resolution grids of monthly climatic observations – the CRU TS3.10 dataset. Int J Climatol. 2014;34:623–642. doi: 10.1002/joc.3711
  • Trombotto D, Buk E. Rock glaciers, Central Andes, Argentina, Version 1. Boulder, Colorado USA. NSIDC: National Snow and Ice Data Centre; 1998.
  • Santoso A, Mcphaden MJ, Cai W. The defining characteristics of ENSO extremes and the strong 2015/2016 El Niño. Rev Geophys. 2017;55:1079–1129. doi: 10.1002/2017RG000560
  • Trombotto D, Borzotta E. Indicators of present global warming through changes in active layer-thickness, estimation of thermal diffusivity and geomorphological observations in the Morenas Coloradas rock glacier, Central Andes of Mendoza, Dry Andes, Argentina. Cold Reg Sci Technol. 2009;55:321–330. doi: 10.1016/j.coldregions.2008.08.009
  • Heredia N, Farias P, García-Sansegundo J, et al. The basement of the Andean frontal Cordillera in the Cordón del Plata (Mendoza, Argentina): geodynamic evolution. Andean Geol. 2012;39(2):242–257.
  • Caminos R. Geología de la vertiente oriental del Cordón del Plata Cordillera frontal de Mendoza. Rev Asoc Geol Arg. 1965;XX(3):351–392.
  • APHA. Standard methods for the examination of water and wastewater. 20th ed Washington (DC): American Public Health Association, American Water Works Association, Water Environment Federation; 1998.
  • Piper AM. A graphic procedure in the geochemical interpretation of water-analyses. Trans Am Geophys Union. 1944;25(6):914–923. doi: 10.1029/TR025i006p00914
  • International Atomic Energy Agency. A new device for monthly rainfall sampling. Water Environ. 2002;16:5.
  • Lis G, Wassenaar LI, Hendry MJ. High-precision laser spectroscopy D/H and 18O/16O measurements of microliter natural water samples. Anal Chem. 2008;80(1):287–293. doi: 10.1021/ac701716q
  • Gonfiantini R. Standards for stable isotope measurements in natural compounds. Nature. 1978;271(5645):534–536. doi: 10.1038/271534a0
  • Craig H. Isotope variations in meteoric waters. Science. 1961;133:1702–1703. doi: 10.1126/science.133.3465.1702
  • Dansgaard W. Stable isotopes in precipitation. Tellus. 1964;16:436–468. doi: 10.3402/tellusa.v16i4.8993
  • Custodio E, Llamas MR. Hidrología subterránea. 2nd ed Barcelona: Ed. Omega S.A.; 2001. Spanish.
  • Durfor CN, Becker E. Public water supplies of the 100 largest cities in the United States. Washington (DC): US Government Printing Office; 1964; (USGS Water-Supply; 1812).
  • Arnasson B. Ice and snow hydrology. In: Gat J, Gonfiantini R, editor. Stable isotope hydrology: deuterium and oxygen in the water cycle. Vienna: International Atomic Energy Agency; 1981. p. 143–175. (Technical Reports Series; N° 210).
  • Gat JR. Isotope hydrology. A study of the water cycle. London: Imperial College Press; 2010; (Series on Environmental Science and Management; 6).
  • Sileo N, Trombotto Liaudat D, Dapeña C. Estudios preliminares del agua, nieve y hielo en la cuenca del río Vallecitos, Mendoza, Argentina. Acta Geológica Lilloana. 2015;27(2):130–145. Spanish.
  • Ander EL, Smith B, Reeder S. Thematic interpretation of stream water chemistry. Annex 1, FOREGs. In: Vos W D, Tarvainen T, editors. Geochemical atlas of Europe. part 2 – Interpretation of geochemical maps, Additional tables, fig., maps, and related publications. Otamedia Oy (Espoo): Geol. Survey of Finland; 2006. p. 455–488.
  • Milana JP, Dapeña C. Insights on the snow provenance of central western Argentina using stable isotopes. In. Proceedings of II Reunión Argentina de Geoquímica de la Superficie (II RAGSU). Actas/Resúmenes, Sec. Geoquímica Isotópica GI-9. Bahía Blanca (Argentina): UNS; 2012.
  • Trombotto D. Untersuchungen zum periglazialen Formenschatz und zu periglazialen Sedimenten in der ‘Lagunita del Plata’, Mendoza, Argentinien. Heidelberg, Germany: Geographisches Institut der Universitat Heidelberg; 1991. (Heidelberger Geographische Arbeiten; 90). German.
  • Rivera D, Godoy-Faundez A, Saavedra M, editors. Andean hydrology. Boca Raton, FL: CRC Press; 2018.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.