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:

Vulnerability assessment is considered an effective tool in establishing monitoring networks required for controlling potential pollution. The aim of this work is to propose a new integrated methodology to assess actual and forecasted groundwater vulnerability by including land-use change impact on groundwater quality. Land-use changes were simulated by applying a spatial dynamics model in a scenario of agricultural expansion. Groundwater vulnerability methodology DRASTIC-P, was modifyed by adding a land-use parameter in order to assess groundwater vulnerability within a future scenario. This new groundwater vulnerability methodology shows the areas where agricultural activities increase the potential level of groundwater vulnerability to pollution. The Dulce Creek Basin was the study case proposed for the application of this methodology. The study revealed that the area with Very High vulnerability would increase 20% by the year 2020 in the Dulce Creek Basin. This result can be explained by analyzing the land-use map simulated by the Dyna-CLUE model for the year 2020, which shows that the areas with increments in crop and pasture coincide with the area defined by the Very High aquifer vulnerability category in the year 2020. Through scenario analysis, land-use change models can help to identify medium or long term critical locations in the face of environmental change. © 2011 Springer Science+Business Media, LLC.

Registro:

Documento: Artículo
Título:Groundwater vulnerability assessment combining the drastic and Dyna-CLUE model in the Argentine Pampas
Autor:Lima, M.L.; Zelaya, K.; Massone, H.
Filiación:Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina
Instituto de Geología de Costas y Del Cuaternario, Universidad Nacional de Mar Del Plata, FCEyN, Funes 3350, Nivel 1, Mar del Plata 7600, Argentina
Facultad de Ingeniería, Universidad FASTA, Mar del Plata, Argentina
Instituto Nacional de Tecnología Agropecuaria (EEA-Balcarce), Buenos Aires, Argentina
Idioma: Inglés
Palabras clave:DRASTIC-P; Dyna-CLUE model; Land-use change; Vulnerability assessment; Agricultural activities; Agricultural expansion; Aquifer vulnerability; Critical location; DRASTIC-P; Dyna-CLUE model; Effective tool; Environmental change; Groundwater quality; Groundwater vulnerability; Integrated methodology; Land-use change; Monitoring network; Scenario analysis; Spatial dynamics; Study case; Vulnerability assessments; Aquifers; Computer simulation; Forestry; Groundwater resources; Land use; Pollution; Rating; Water quality; Groundwater pollution; ground water; aquifer; crop; environmental change; environmental modeling; environmental monitoring; groundwater; land use change; pasture; pollution monitoring; vulnerability; agriculture; aquifer; article; controlled study; environmental change; environmental management; environmental planning; land use; pollution monitoring; risk assessment; simulation; water quality; Argentina; Environmental Monitoring; Risk Assessment; Water Pollution; Water Supply; Argentina; Pampas
Año:2011
Volumen:47
Número:5
Página de inicio:828
Página de fin:839
DOI: http://dx.doi.org/10.1007/s00267-011-9652-1
Título revista:Environmental Management
Título revista abreviado:Environ. Manage.
ISSN:0364152X
CODEN:EMNGD
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_0364152X_v47_n5_p828_Lima

Referencias:

  • Al-Adamat, R.A.N., Foster, I.D.L., Baban, S.M.J., Groundwater vulnerability and risk mapping for the Basaltic aquifer of the Azraq basin of Jordan using GIS, Remote sensing and DRASTIC (2003) Applied Geography, 23 (4), pp. 303-324. , DOI 10.1016/j.apgeog.2003.08.007
  • Aller, L., Bennett, T., Lehr, J., Petty, R., (1987) DRASTIC: A Standardized System for Evaluating Ground Water Pollution, , Doc. EPA/600/2-85/018
  • Al-Zabet, T., Evaluation of aquifer vulnerability to contamination potential using the DRASTIC method (2002) Environmental Geology, 43 (1-2), pp. 203-208. , DOI 10.1007/s00254-002-0645-5
  • Arnold, T.L., Friedel, M.J., Effects of land use on recharge potential of surficial and shallow bedrock aquifers in the upper Illinois River Basin (2000) U.S. Geological Survey Water-Resources Investigations Report 00-4027
  • Ashagrie, A.G., De Laat, P.J.M., De Wit, M.J.M., Tu, M., Uhlenbrook, S., Detecting the influence of land use changes on discharges and floods in the Meuse River Basin - The predictive power of a ninety-year rainfall-runoff relation? (2006) Hydrology and Earth System Sciences, 10 (5), pp. 691-701
  • Auge, M., (2004) Vulnerabilidad de Acuíferos: Conceptos y Métodos. e Book: 1-38. RedIRIS. Red Académica y Científica de España en Internet, , http://tierra.rediris.es/hidrored/ebooks/vulnerabilidad.html, Accessed March 10, 2007
  • Baalousha, H., Vulnerability assessment for the Gaza Strip, Palestine using DRASTIC (2006) Environmental Geology, 50 (3), pp. 405-414. , DOI 10.1007/s00254-006-0219-z
  • Batelaan, O., De Smedt, F., Triest, L., Regional groundwater discharge: Phreatophyte mapping, groundwater modelling and impact analysis of land-use change (2003) Journal of Hydrology, 275 (1-2), pp. 86-108. , DOI 10.1016/S0022-1694(03)00018-0
  • Bosch, J.M., Hewlett, J.D., A review of catchment experiments to determine the effect of vegetation changes on water yield and evapotranspiration (1982) Journal of Hydrology, 55 (14), pp. 3-23. , 10.1016/0022-1694(82)90117-2
  • Calder, I.R., Hydrologic effects of land-use change (1993) Handbook of Hydrology, pp. 131-1350. , Maidment DR (ed) McGraw-Hill, New York, USA
  • Cameron, E., Peloso, G.F., An application of fuzzy logic to the assessment of aquifers' pollution potential (2001) Environmental Geology, 40 (11-12), pp. 1305-1315. , DOI 10.1007/s002540100353
  • Civita, M., (1994) Le Carte della Vulnerabilit'a Degli Acquiferi all'Inquinamiento: Teoria e Pratica [Contamination Vulnerability Mapping of the Aquifer: Theory and Practice], , Quaderni di Tecniche di Protezione Ambientale Pitagora, Italy
  • Costa, J.L., Vidal, C., En: Actas XVI Congreso Argentino de la Ciencia del suelo (1998) AACS, , Villa Carlos Paz. Córdoba, Mayo 1998
  • Costa, J.L., Massone, H., Martìnez, D., Suero, E., Vidal, M., Bedmar, F., Nitrate contamination of a rural aquifer and accumulation in the unsaturated zone (2002) Agricultural Water Management, 1744, pp. 1-15
  • Custodio, E., Coastal aquifer management and remedial measures from saltwater intrusion induced by overexploitation, IV geoengineering international congress (1994) Politécnico di Torino, 3, pp. 757-774
  • Dietzel, C., Clarke, K.C., Toward optimal calibration of the SLEUTH land use change model (2007) Transactions in GIS, 11 (1), pp. 29-45. , DOI 10.1111/j.1467-9671.2007.01031.x
  • Doerfliger, N., Zwahlen, F., (1998) Groundwater Vulnerability Mappin in Karstic Regions (EPIK): Application to Groundwater Protection Zones, , Swiss Agency for the Environment, Forest and Landscape (SAEFL) Bern, Switzerland
  • Doerfliger, N., Jeannin, P.-Y., Zwahlen, F., Water vulnerability assessment in karst environments: A new method of defining protection areas using a multi-attribute approach and GIS tools (EPIK method) (2000) Environmental Geology, 39 (2), pp. 165-176
  • (2010), http://www.esri.com, ESRI (Environment System Research Institute) Accessed May 10, 2010(2002), http://www.fao.org/DOCREP/004/Y3557S/y3557s03.htm#TopOfPage, FAO (Organización de Naciones Unidas Para la Alimentación y la Agricultura) Agricultura Mundial. Hacia los años 2015-2030. Accessed May 31, 2009Fohrer, N., Haverkamp, S., Eckhardt, K., Frede, H.-G., Hydrologic response to land use changes on the catchment scale (2001) Physics and Chemistry of the Earth, Part B: Hydrology, Oceans and Atmosphere, 26 (7-8), pp. 577-582. , DOI 10.1016/S1464-1909(01)00052-1, PII S1464190901000521
  • Foley, J.A., DeFries, R., Asner, G.P., Barford, C., Bonan, G., Carpenter, S.R., Chapin, F.S., Snyder, P.K., Global consequences of land use (2005) Science, 309 (5734), pp. 570-574. , DOI 10.1126/science.1111772
  • Foster, S., Fundamental concepts in aquifer vulnerability, pollution risk and protection strategy (1987) Vulnerability of Soil and Groundwater to Pollutants, pp. 69-86. , W. Van Duijvenbooden H.G. Van Waegeningh (eds). Committee on Hydrological Research The Hague
  • Friedel, M.J., (1998) National Water-quality Assessmentprogram-upper Illinois River Basin, , U.S. Geological Survey Fact Sheet 98-072
  • Gogu, R.C., Dassargues, A., Current trends and future challenges in groundwater vulnerability assessment using overlay and index methods (2000) Environmental Geology, 39 (6), pp. 549-559
  • Goldscheider, N., Klute, M., Sturm, S., Hotzl, H., The PI method: A GIS-based approach to mapping groundwater vulnerability with special consideration of karst aquifers (2000) Zeitschrift für Angewandte Geologie, 46 (3), pp. 157-166
  • (1989) Carta de Suelos de la República Argentina (1:50.000), , INTA (Instituo Nacional de Tecnología Agropecuaria) Proyecto PNUD ARG 85/019. Secretaría de Agricultura, Ganadería y Pesca-INTA
  • Iribarne, O., (2001) Reserva de Biosfera Mar Chiquita: Características Físicas, Biológicas y Ecológicas, , Editorial Martín, Argentina
  • Jamrah, A., Futaisi, A.A., Rajmohan, N., Al-Yaroubi, S., Assessment of groundwater vulnerability in the coastal region of Oman using DRASTIC index method in GIS environment (2007) Environmental Monitoring and Assessment, , 10.1007/s10661-007-0104-6
  • Kim, Y.J., Hamm, S.-Y., Assessment of the potential for groundwater contamination using the DRASTIC/EGIS technique, Cheongju area, South Korea (1999) Hydrogeology Journal, 7 (2), pp. 227-235
  • King, A.W., Johnson, A.R., O'Neill, R.V., De Angelis, D.L., Using ecosystem models to predict regional CO2 exchange between the atmosphere and the terrestrial biosphere (1989) Global Biogeochemical Cycles, 3, pp. 337-361. , 10.1029/GB003i004p00337 1:CAS:528:DyaK3MXhsVOmsLg%3D
  • Klingebiel, A.A., Montgomery, P.H., Land capabiity classification (1961) Agriculture Handbook 210, , Soil Conserv Ser. V.S. Gov. Print. Office, Washington
  • Krause, S., Jacobs, J., Bronstert, A., Modelling the impacts of land-use and drainage density on the water balance of a lowland-floodplain landscape in northeast Germany (2007) Ecological Modelling, 200 (3-4), pp. 475-492. , DOI 10.1016/j.ecolmodel.2006.08.015, PII S0304380006003930
  • Kruse, 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 (34), pp. 367-374. , Buenos Aires
  • Lee, S., Evaluation of waste disposal site using the DRASTIC system in Southern Korea (2003) Environmental Geology, 44 (6), pp. 654-664. , DOI 10.1007/s00254-003-0803-4
  • Lima, M.L., Massone, H., Ferrante, A., Caracterización hidrológica-ambiental de la Cuenca del Arroyo Dulce, Provincia de Buenos Aires (2008) IV Congreso Iberoamericano de Ambiente y Calidad de Vida, , Catamarca, línea científica, 22 al 24 de septiembre de 2008
  • Margat, J., (1968) Groundwater Vulnerability to Contamination, , BRGM, 68 sgl 198, HYD Orleans, France
  • Massone, H., Tomas, M., Farenga, M., (2005) Una Aproximación Geológica A la Planificación de Usos Del Territorio Utilizando Técnicas SIG, , Balcarce (Argentina) como estudio de caso. XVI Congreso Geológico Argentino, Actas V. La Plata, Argentina. ISBN 987-595-001-9
  • Massone, H., Quiroz Londoño, M., Tomas, M., Ferrante, A., Evaluación de la vulnerabilidad de acuíferos en cuencas de llanura periserranas. Estudio de caso, Balcarce, Provincia de Buenos Aires. v Congreso Argentino de Hidrogeología (2007) Actas, 1, pp. 149-158
  • Massone, H., Quiroz Londoño, M., Martinez, D., Enhanced groundwater vulnerability assessment in geological homogeneous areas: A case study from the Argentine Pampas (2010) Hydrogeology Journal, 18 (2), pp. 371-379. , 10.1007/s10040-009-0506-3
  • Mendoza, J.A., Barmen, G., Assessment of groundwater vulnerability in the Río Artiguas basin, Nicaragua (2006) Environmental Geology, 50 (4), pp. 569-580. , DOI 10.1007/s00254-006-0233-1
  • Ott, B., Uhlenbrook, S., Quantifying the impact of land-use changes at the event and seasonal time scale using a process-oriented catchment model (2004) Hydrology and Earth System Sciences, 8 (1), pp. 62-78
  • Overmars, K.P., Verburg, P.H., Veldkamp, T., Comparison of a deductive and an inductive approach to specify land suitability in a spatially explicit land use model (2007) Land Use Policy, 24 (3), pp. 584-599. , DOI 10.1016/j.landusepol.2005.09.008, PII S0264837706000688, Integrated Assessment of the Land System: The Future of Land Use
  • Perdomo, C.H., Casanova, O.N., Ciganda, V.S., Contaminación de aguas subterraneas con nitratos en el litoral sudoeste del uruguay (2001) Agrociencia v, 1, pp. 10-22
  • Pijanowski, B.C., Alexandridis, K.T., Mueller, D., Modelling urbanization patterns in two diverse regions of the world (2006) Journal of Land Use Science, 1, pp. 83-108. , 10.1080/17474230601058310
  • Pontius, R.G., Schneider, L.C., Land-use change model validation by a ROC method (2000) Agriculture, Ecosystems & Environment, 85, pp. 269-280
  • (2010) Programa de Actualización, , PRODINES (Dinámica Espacial del Sistema Sociedad-Naturaleza). Facultad de Arquitectura, Diseño y Urbanismo, Universidad Nacional de Buenos Aires Buenos Aires
  • Quiroz Londoño, O.M., Hidrogeología del Área Interserrana Bonaerense: Cuencas de los Arroyos El Moro, Tamangueyú y Seco (2006) VIII Congreso Latinoamericano de Hidrología Subterránea y EXPOAGUA 2006, , Asunción, Paraguay
  • Rimski-Korsakov, H., Torres Duggan, M., Lavado, R.S., (2000) Influencia de la Fertilización y El Riego en la Lixiviación de Nitratos en un Suelo Franco Arenoso, , Actas XVII Congreso Argentino de la Ciencia del Suelo Mar del Plata. Argentina
  • Rosen, L., A study of the DRASTIC methodology with emphasis on Swedish conditions (1994) Ground Water, 32, pp. 278-285. , 10.1111/j.1745-6584.1994.tb00642.x
  • Sala, J., (1975) Recursos Hídricos. Relatorio VI Congreso Geológico Argentino, pp. 169-194. , Bs. As
  • (2006) Sistema de Indicadores de Desarrollo Sostenible República Argentina, , SAyDS (Secretaria de Ambiente y Desarrollo Sustentable)
  • Schwarze, R., Herrmann, A., Mendel, O., Regionalization of runoff components for central European basins (1994) FRIEND; Flow Regimes from International Experimental and Network Data, Proceeding Braunschweig Conference, pp. 493-502. , Seuna P, Gustard A, Arnell NW, Cole GA (eds) October 1993, AHS Publ. No. 221
  • Secunda, S., Collin, M.L., Melloul, A.J., Groundwater vulnerability assessment using a composite model combining DRASTIC with extensive agricultural land use in Israel's Sharon region (1998) Journal of Environmental Management, 54 (1), pp. 39-57. , DOI 10.1006/jema.1998.0221
  • Sener, E., Sener, S., Davraz, A., Assessment of aquifer vulnerability based on GIS and DRASTIC methods: A case study of the Senirkent-Uluborlu Basin (Isparta, Turkey) (2009) Hydrogeology Journal, 17 (8), pp. 2023-2035. , 10.1007/s10040-009-0497-0 1:CAS:528:DC%2BD1MXhsVOktL7K
  • Soares-Filho, B.S., Nepstad, D.C., Curran, L.M., Cerqueira, G.C., Garcia, R.A., Ramos, C.A., Voll, E., Schlesinger, P., Modelling conservation in the Amazon basin (2006) Nature, 440, pp. 520-523. , 10.1038/nature04389 10.1038/nature04389 1:CAS:528:DC%2BD28Xis1Olsr0%3D
  • Sohl, T.L., Sayler, K.L., Drummond, M.A., Loveland, T.R., The FORE-SCE model: A practical approach for projecting land cover change using scenario-based modeling (2007) Journal of Land Use Science, 2, pp. 103-126. , 10.1080/17474230701218202
  • Swets, J.A., Measuring the accuracy of diagnostic systems (1986) Science, 240, pp. 1285-1293. , 10.1126/science.3287615
  • Teruggi, M., El mineral volcánico-piroclástico en la sedimentación cuaternaria argentina (1954) Revista de la Asociación Geológica Argentina, 9 (3), pp. 184-191. , Buenos Aires
  • A basic of soil classification for making and interpreting soils surveys, 2nd edn (1999) Agriculture Handbook No 436, , USDA (Departamento de Agricultura de Estados Unidos) Soil taxonomy
  • Van Stempvoort, D., Ewert, L., Wassenaar, L., Aquifer vulnerability index (AVI): A GI compatible method for groundwater vulnerability mapping (1993) Canadian Water Resources Journal, 18, pp. 25-37. , 10.4296/cwrj1801025
  • Verburg, P.H., (2007) Manual 'Spatial Models of Land Use Change', , http://www.glp.hokudai.ac.jp/link/2007_AdvancedInstitute/material/manual. pdf, Advanced Institute in Integrated Land Systems Modelling. Wageningen University, The Netherlands. Accessed Jan 15, 2011
  • Verburg, P.H., Overmars, K.P., Combining top-down and bottom-up dynamics in land use modeling: Exploring the future of abandoned farmlands in Europe with the Dyna-CLUE model (2009) Landscape Ecology, 24, pp. 1167-1181. , 10.1007/s10980-009-9355-7
  • Verburg, P.H., Soepboer, W., Veldkamp, A., Limpiada, R., Espaldon, V., Mastura, S.S.A., Modeling the spatial dynamics of regional land use: The CLUE-S model (2002) Environmental Management, 30 (3), pp. 391-405. , DOI 10.1007/s00267-002-2630-x
  • Verburg, P.H., Schot, P.P., Dijst, M.J., Veldkamp, A., Land use change modelling: Current practice and research priorities (2004) GeoJournal, 61 (4), pp. 309-324. , DOI 10.1007/s10708-004-4946-y
  • Verburg, P.H., Veldkamp, T., Overmars, K., Lesschen, J.P., Kok, K., (2004) Manual for the CLUE-S Model, , http://www.cluemodel.nl, Wageningen University, The Netherlands. Accessed May 15, 2008
  • Verburg, P.H., Overmars, K.P., Huigen, M.G.A., De Groot, W.T., Veldkamp, A., Analysis of the effects of land use change on protected areas in the Philippines (2006) Applied Geography, 26 (2), pp. 153-173. , DOI 10.1016/j.apgeog.2005.11.005, PII S0143622805000536, Are Parks Working? Exploring Human-Environment Tradeoffs in Protected Area Conservation
  • Vias, J.M., Andreo, B., Perles, M.J., Carrasco, F., Vadillo, I., Jimenez, P., Proposed method for groundwater vulnerability mapping in carbonate (karstic) aquifers: The COP method (2006) Hydrogeology Journal, 14 (6), pp. 912-925. , DOI 10.1007/s10040-006-0023-6
  • Viglizzo Ef, F., Situación Ambiental en las Ecorregiones Pampa y Campos y Malezales (2006) La Situación Ambiental Argentina 2005. Buenos Aires, 1ra Edición, , Brown A, Martinez Ortiz U, Acerbi M, y Corchera J (eds) Fundación Vida Silvestre Argentina
  • Vrba, J., Zaporozec, (1994) Guidebook on Mapping Groundwater Vulnerability International Association of Hydrogeologists, 16. , ISBN 3-922705-97-9
  • Wang, Y., Merkel, B.J., Li, Y., Ye, H., Fu, S., Ihm, D., Vulnerability of groundwater in Quaternary aquifers to organic contaminants: A case study in Wuhan City, China (2007) Environmental Geology, 53 (3), pp. 479-484. , DOI 10.1007/s00254-007-0669-y, Special Issue: Groundwater vulnerability assessment and mapping (pp. 477 - 500)
  • Doe III, W.W., Saghafian, B., Julien, P.Y., Land-use impact on watershed response: The integration of two-dimensional hydrological modelling and geographical information systems (1996) Hydrological Processes, 10 (11), pp. 1503-1511. , DOI 10.1002/(SICI)1099-1085(19 9 611)10:11<1503::AID-HYP387>3.0. CO;2-#
  • Zelaya, K., Lima, M.L., Laterra, P., MacEira, N., Massone, H., (2009) Simulación de Cambios en El Uso de la Tierra en la Cuenca Del Arroyo Dulce. Provincia de Buenos Aires, Argentina, , Simposio de Geomática y otras tecnologías de la Ingeniería Agrícola y el Medio Ambiente Cuba

Citas:

---------- APA ----------
Lima, M.L., Zelaya, K. & Massone, H. (2011) . Groundwater vulnerability assessment combining the drastic and Dyna-CLUE model in the Argentine Pampas. Environmental Management, 47(5), 828-839.
http://dx.doi.org/10.1007/s00267-011-9652-1
---------- CHICAGO ----------
Lima, M.L., Zelaya, K., Massone, H. "Groundwater vulnerability assessment combining the drastic and Dyna-CLUE model in the Argentine Pampas" . Environmental Management 47, no. 5 (2011) : 828-839.
http://dx.doi.org/10.1007/s00267-011-9652-1
---------- MLA ----------
Lima, M.L., Zelaya, K., Massone, H. "Groundwater vulnerability assessment combining the drastic and Dyna-CLUE model in the Argentine Pampas" . Environmental Management, vol. 47, no. 5, 2011, pp. 828-839.
http://dx.doi.org/10.1007/s00267-011-9652-1
---------- VANCOUVER ----------
Lima, M.L., Zelaya, K., Massone, H. Groundwater vulnerability assessment combining the drastic and Dyna-CLUE model in the Argentine Pampas. Environ. Manage. 2011;47(5):828-839.
http://dx.doi.org/10.1007/s00267-011-9652-1