Artículo

Estamos trabajando para incorporar este artículo al repositorio
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

Nitrate contamination of surface and groundwater is a global problem which is related to the intense agricultural activity. The high concentrations affect the waters quality and it turns out to be an important indicator of the human influence. In the phreatic aquifer in a plain basin in southeastern Buenos Aires province of Argentina, nitrate has values between 4 and 235 mg/L measured in October 2013 and 5.7-250 mg/L in July 2014. Respect to the values in surface water, were measured concentrations of 7-79, 6 mg/L during October 2013-July 2014 and 1-120 mg/L from July 2014 to April 2015. The present day background values found in the aquifer were calculated through a statistical analysis and compared to monitor their variations. Also, were calculated in the two periods the present day background superficial water to compare them with the aquifer. Based on the results, a new methodology is proposed to analyze the surface-groundwater linkage. © The author.

Registro:

Documento: Artículo
Título:Present day background of nitrate as a methodology in the surface water - Groundwater interaction applied in southeastern Buenos Aires province, Argentina
Autor:Calvi, C.; Dapeña, C.; Martínez, D.E.
Filiación:INGEIS Instituto de Geocronología y Geología Isotópica (INGEIS, CONICET-UBA), Pabellón INGEIS, Ciudad Universitaria, Buenos Aires, Argentina
CONICET e Instituto de Geología de Costas y del Cuaternario (CGCyC)-UNMDP, Mar del Plata, Argentina
Palabras clave:Contamination; Fertilizer; Gaining creek; Nitrate leaching; Nitrate monitoring; Phreatic aquifer
Año:2018
Volumen:85
Número:207
Página de inicio:288
Página de fin:296
DOI: http://dx.doi.org/10.15446/dyna.v85n207.72543
Título revista:DYNA (Colombia)
Título revista abreviado:DYNA
ISSN:00127353
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00127353_v85_n207_p288_Calvi

Referencias:

  • Edmunds, W.M., Shand, P., (2008) Natural Groundwater Quality, , Wiley-Blackwell, London
  • Sutton, M., Howard, C., Erisman, J., Bleeker, G., Grennfelt, P., van Grinsven, H., Grizzetti, B., (2011) The European Nitrogen Assessment Sources, Effects and Policy Perspectives, , Cambridge University Press
  • Liu, F., Song, X., Yang, L., Han, D., Zhang, Y., Ma, Y., Bu, H., The role of anthropogenic and natural factors in shaping the geochemical evolution of groundwater in the Subei Lake basin, Ordos energy base, Northwestern China (2015) Science of the Total Environmental, 538, pp. 327-340
  • Kim, K.H., Yun, S.T., Kim, H.K., Kim, J.W., Determination of natural backgrounds and thresholds of nitrate in South Korean groundwater using model-based statistical approaches (2015) Journal of Geochemical Exploration, 148, pp. 196-205
  • L’Hirondel, J., L’Hirondel, J.L., (2001) Nitrate and Man. Toxic, Harmless Or Beneficial?, , CAB Publishing, Wallingford, United Kingdom
  • Powlson, D.S., Addiscott, T.M., Benjamin, N., Cassman, K.G., de Kok, T.M., van Grinsven, H., L´hirondel, J.L., Avery, A.A. and van Kessel, C., When does nitrate become a risk for humans? (2008) Journal of Environmental Quality, 37, pp. 291-295
  • (2011) Guidelines for Drinking Water Quality, , 1, 3rd ed., Geneva, Switzerland, ISBN: 92 4 154638 7
  • Jordan, C., Smith, R.V., Methods to predict the agricultural contribution to catchment nitrate loads: Designation of nitrate vulnerable zones in Northern Ireland (2005) Journal of Hydrology, 304, pp. 316-329
  • Liu, A., Ming, J., Ankumah, R.O., Nitrate pollution in private wells in rural Alabama, United States (2005) Science of the Total Environmental, 346, pp. 112-120
  • Burkart, M., Stoner, J., Chapter 7: Nitrogen in groundwater associated with agricultural system (2008) Nitrogen in the Environment: Sources, Problems, and Management [Online], , http://digitalcommons.unl.edu/usdaarsfacpub/259, Hatfield, J.L. and Follet, R.F., Elsevier Inc, Available at
  • Wheeler, D.C., Nolan, B.T., Flory, A.R., Della-Valle, C.T., Ward, M.H., Modeling groundwater nitrate concentrations in private wells in Iowa (2015) Science of the Total Environmental, 536, pp. 481-488
  • Amano, H., Nakagawa, K., Berndtsson, R., Groundwater geochemistry of a nitrate-contaminated agricultural site (2016) Environmental Earth Sciences, 75 (15)
  • Valujeva, K., O´Sullivan, L., Gutzler, C., Fealy, R., Schulte, R.P., The challenge of managing soil functions at multiple scales: An optimisation study of the synergistic and antagonistic trade-offs between soil functions in Ireland (2016) Land Use Policy, 58, pp. 335-347
  • Mastchullat, J., Ottenstein, R., Reimann, C., Geochemical background-can we calculate it? (2000) Environmental Geology, 39 (9), pp. 990-1000
  • Manzano, M., Custodio, E., Nieto, P., El Fondo Natural De La Calidad Del Agua subterránea, , Basile et al. (Eds.), Primer seminario Hispano Latinoamericano sobre tema
  • (2003), pp. 607-620. , ISBN: 950-673-395-3; Reimann, C., Garrett, R., Geochemical background—concept and reality (2005) Science of the Total Environmental, 350, pp. 12-27
  • Panno, S., Kelly, W., Martinsek, A., Hackley, K., Estimating background and threshold nitrate concentrations using probability graphs (2006) Ground Water, 44, pp. 697-709
  • George, W.O., Hastings, W.W., Nitrate in the ground water of Texas (1951) Transactions American Geophysical Union, 32 (3), pp. 450-456
  • Chen, H.H., Druliner, A.D., Nonpoint-source ground-water pollution-Agricultural chemical pollution of ground water in six areas of the High Plains aquifer, Nebraska (1998) Hydrologic Events and Ground-Water Quality, , Moody, D.W., Carr, J., Chase, E.B. and Paulson, R.W., (Eds.), United States Geological Survey Water-Supply Paper 2325, Washington D.C., U.S. Government Printing Office
  • Tesoriero, A.J., Voss, F.D., Predicting the probability of elevated nitrate concentrations in the Puget Sound Basin: Implications for aquifer susceptibility and vulnerability (1997) Ground Water, 35, pp. 1029-1039
  • Nolan, B.T., Hitt, K.J., Ruddy, B.C., Probability of nitrate pollution of recently recharged groundwaters in the conterminous United States (2002) Environmental Science and Technology, 36 (10), pp. 2138-2145
  • Rossi, P., Lexow, C., Bonorino, G., Los nitratos en el agua subterránea de la cuenca superior del arroyo Chasicó (1992) Proceedings of 3Ras. Jornadas Geológicas Bonaerenses, pp. 201-206
  • Martínez, D.E., (1995) Contaminación Del Agua subterránea Por Actividades agrícolas En El Sudeste Bonaerense, , Informe diagnóstico, Centro de Geología de Costas y Cuaternario, UNMdP, Mar del Plata, Argentina
  • Bonorino, G., Albouy, R., Lexow, C., Carrica, J., Nitratos en acuífero zona periserrana de las Sierras Australes (1999) Proceedings of the 2º Congreso Argentino De Hidrogeología. Serie Correlación Geológica, 13, pp. 231-240
  • Giuliano-Albo, J., Blarasin, M., Hidrogeoquímica y estimación del fondo natural de nitratos del agua subterránea en un agroecosistema del piedemonte de la sierra de Comechingones (2014) Revista De La Asociacion Geologica Argentina, 71 (3), pp. 378-392
  • Martinez, D.E., Moschione, E., Bocanegra, E., Glok-Galli, M., Aravena, R., Distribution and origin of nitrate in groundwater in an urban and suburban aquifer in Mar del Plata, Argentina (2014) Environmental Earth Sciences, 72 (6), pp. 1877-1886
  • Meglioli, P., Aranibar, J., Villagra, P.E., Jobbagy, E.G., Livestock stations as foci of groundwater recharge and nitrate leaching in a sandy desert of the Central Monte, Argentina (2013) Ecohydrology, 7 (2), pp. 600-611
  • Thornthwaite, C.W., An approach toward a rational classification of climate (1948) Geographical Review, 38 (1), pp. 55-94
  • Calvi, C., Dapeña, C., Martinez, D.E., Gutheim, F., Caracterización química e isotópica de la cuenca del arroyo La Ballenera, partido General Alvarado, Provincia de Buenos Aires Datos preliminares Proceedings of Thel II Congreso De Hidrología De Llanuras, Venturini Et Al (Eds.), Santa Fe, Universidad Nacional Del Litoral, p. 10. , P. ISBN: 978-987-692-039-1
  • (2013) Ministerio De Asuntos Agrarios De La Provincia De Buenos Aires, , http://www.chacramiramar.com.ar/, Argentina
  • Calvi, C., (2018) Identificación De La Descarga De Aguas subterráneas En Arroyos Del Sudeste De La Provincia De Buenos Aires Con Trazadores químicos E isotópicos, , Tesis Doctoral, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires
  • Mosciaro, M., Dimuro, V., Zonas Agroeconómicas homogéneas Buenos Aires Sur [En línea] (2009) Buenos Aires, 297p. , http://inta.gob.ar/documentos/zonas-agroeconomicas-homogeneas-buenos-aires-sur, INTA, accessed 05.2016
  • Huarte, M.A., Capezio, S.B., Cultivo de papa (2013) Asignatura Cultivo De Papa, , http://inta.gob.ar/documentos/cultivodepapa/at_multi_download/file/NTA-%20huarte_capezio_papa2013.pdf, Unidad Integrada Balcarce INTA FCA, UNMdP
  • Calvi, C., Dapeña, C., Martinez, D., Londoño, M., Relationship between electrical conductivity of water and NO 3 content in different streamflow stage (2018) Environmental Earth Sciences, 77, p. 248
  • Sala, J.M., Recursos Hídricos (1975) Proceedings of the VI Congreso Geológico Argentino, pp. 169-194. , Bahía Blanca, Argentina
  • Sala, J.M., González, N., Kruse, E.E., Generalización hidrológica de la provincia de Buenos Aires (1983) Coloquio Sobre hidrología De Grandes Llanuras, PHI – UNESCO. Olavarría, pp. 973-1009
  • Kruse, E.E., Aspectos geohidrológicos de la región sudoriental de Tandilla. Cuencas de los Aos, Vivoratá, Las Brusquitas y El Durazno (1986) Asociación Geológica Argentina, Revista, 41 (3-4), pp. 367-374
  • González, M., Los ambientes hidrogeológicos de la provincia de Buenos Aires (2005) Proceedings of the XVI Congreso Geológico Argentino, La Plata, Cap, 22, pp. 348-359
  • Teruggi, M., El mineral volcánico-piroclástico en la sedimentación cuaternaria Argentina (1964) Revista De La Asociación Geológica Argentina, 9 (3), pp. 184-191
  • Camilión, M.C., Clay mineral composition of Pampean Loess (Argentina) (1993) Quaternary International, 17, pp. 27-31
  • Vital, M., Daval, D., Clément, A., Quiroga, S., Fritz, B., Martinez, D.E., Importance of accessory minerals for the control of water chemistry of the Pampean aquifer, province of Buenos Aires (2018) Argentina. CATENA, 160, pp. 112-123. , ISSN: 0341-8162
  • Calvi, C., Martinez, D., Dapeña, C., Gutheim, F., Abundance and distribution of fluoride concentrations in groundwater: La Ballenera catchment, southeast of Buenos Aires Province, Argentina (2016) Environmental Earth Sciences, 75 (6), p. 534
  • Thornthwaite, C.W., Matter, J.R., The water balance. Centerton: Drexel Institute of Technology (1955) Publications in Climatology, Laboratory of Climatology, 8 (1), p. 104
  • Lepeltier, C., A simplified statistical treatment of geochemical data by graphical (1969) Economic Geology, 64, pp. 538-550
  • Blarasin, M., Damilano, G., Cabrera, A., Matteoda, E., Hidrogeoquímica del acuífero freático en un agroecosistema y consideraciones sobre el cálculo de la línea de base de la calidad del agua (2006) Proceedings of the VIII Congreso Latinoamericano De Hidrología subterránea, 25p. , Paraguay
  • Blarasin, M., Bécher-Quinodóz, F., Felizzia, J., Giuliano, J., Cabrera, A., Hidrogeoquímica del acuífero freático, anomalías en nitratos y relación con valores de fondo natural, Justo Daract, San Luis (2012) Proceedings of the 2° RAGSU, pp. 23-29. , Bahía Blanca, Bs. As
  • Picone, L.I., Andreoli, E., Costa, J.L., Aparicio, V., Crespo, L., Nannini, J., Tambascio, W., Evaluación de nitratos y bacterias coliformes en pozos de la Cuenca alta del Arroyo Pantanoso (Buenos Aires) (2003) Revista De Investigaciones Agropecuarias, 32 (1), pp. 99-110. , ISSN: 0325-8718
  • Almasri, M.N., Nitrate contamination of groundwater: A conceptual management framework (2007) Environmental Impact Assessment Review, 27, pp. 220-242
  • Buczko, U., Kuchenbuch, R.O., Lennartz, B., Assessment of the predictive quality of simple indicator approaches for nitrate leaching from agricultural fields (2010) Journal of Environmental Management, 91, pp. 1305-1315
  • Baram, S., Kurtzman, D., Ronen, Z., Peeters, A., Dahan, O., Assessing the impact of dairy waste lagoons on groundwater quality using a spatial analysis of vadose zone and groundwater information in a coastal phreatic aquifer (2014) Journal of Environmental Management, 132, pp. 135-144
  • Foster, S., Hirata, R., Gomes, D., D’Elia, M., Paris, M., Protección de la calidad del agua subterránea (2002) Guía Para Empresas De Agua, Autoridades Municipalidades Y Agencias Ambientales, , Washington D.C., World Bank
  • Chowdary, V.M., Rao, N.H., Sarma, P.B.S., Decision support framework for assessment of non-point-source pollution of groundwater in large irrigation projects (2005) Agricultural Water Management, 75, pp. 194-225
  • Rivett, M., Drewes, J., Barret, M., Chilton, J., Appleyard, S., Dieter, H.H., Wauchope, D., Fastner, J., Chemicals: Health relevance, transport and attenuation (2006) Protecting Groundwater for Health: Managing the Quality of Drinking Water Sources, , Schmoll, O., Howard, G., Chilton, J. and Chorus, I., (Eds.), 1ª ed., Londres Seattle: World Health Organization-IWA
  • Costa, J.L., Massone, H., Martinez, D., Suero, E.E., Vidal, C.M., Bedmar, F., Nitrate pollution of a rural aquifer and accumulation in the vadose zone (2002) Agricultural Water Management, 57, pp. 33-47
  • Kirchner, J.W., A double paradox in catchment hydrology and Geochemistry (2003) Hydrological Processes, 17, pp. 871-874

Citas:

---------- APA ----------
Calvi, C., Dapeña, C. & Martínez, D.E. (2018) . Present day background of nitrate as a methodology in the surface water - Groundwater interaction applied in southeastern Buenos Aires province, Argentina . DYNA (Colombia), 85(207), 288-296.
http://dx.doi.org/10.15446/dyna.v85n207.72543
---------- CHICAGO ----------
Calvi, C., Dapeña, C., Martínez, D.E. "Present day background of nitrate as a methodology in the surface water - Groundwater interaction applied in southeastern Buenos Aires province, Argentina " . DYNA (Colombia) 85, no. 207 (2018) : 288-296.
http://dx.doi.org/10.15446/dyna.v85n207.72543
---------- MLA ----------
Calvi, C., Dapeña, C., Martínez, D.E. "Present day background of nitrate as a methodology in the surface water - Groundwater interaction applied in southeastern Buenos Aires province, Argentina " . DYNA (Colombia), vol. 85, no. 207, 2018, pp. 288-296.
http://dx.doi.org/10.15446/dyna.v85n207.72543
---------- VANCOUVER ----------
Calvi, C., Dapeña, C., Martínez, D.E. Present day background of nitrate as a methodology in the surface water - Groundwater interaction applied in southeastern Buenos Aires province, Argentina . DYNA. 2018;85(207):288-296.
http://dx.doi.org/10.15446/dyna.v85n207.72543