Prioritization to protect springs for public urban water supplies, based on multi-criteria evaluation and GIS (State of Mexico, Mexico)

Applied Geography - Tập 107 - Trang 26-37 - 2019
Sonia López1, José L. Expósito1, María V. Esteller1, Miguel A. Gómez1, Roberto Franco2, Guillermo P. Morales1
1Instituto Interamericano de Tecnología y Ciencias del Agua (IITCA), Universidad Autónoma del Estado de México. Carretera Toluca-Atlacomulco, km 14.5. CP 50200, Toluca, Estado de México
2Facultad de Geografía, Universidad Autónoma del Estado de México. Cerro de Coatepec, Ciudad Universitaria, C.P. 50110, Toluca, Estado de México

Tài liệu tham khảo

Alvarado, 2016, Multi-criteria decision analysis and GIS approach for prioritization of drinking water utilities protection based on their vulnerability to contamination, Water Resources Management, 30, 1549, 10.1007/s11269-016-1239-4 Arumí, 2014, Caracterización de dos grupos de manantiales en el río Diguillín, Chile, Tecnología y Ciencias del Agua, 5, 151 Baca, 2006, Physical, chemical, bacteriological and radioisotopic parameters from springs and wells around Jocotitlan volcano, Mexico, International Journal of Environment and Pollution, 26 Banzato, 2015, The importance of monitoring for the determination of aquifer vulnerability and spring protection areas, Engineering Geology for Society and Territory, 5, 1379, 10.1007/978-3-319-09048-1_264 Biava, 2014, Delineation of protection zones for the main discharge area of the gran Sasso aquifer (Central Italy) through an integrated geomorphological and chronological approach, Journal of Water Resource and Protection, 6, 1816, 10.4236/jwarp.2014.619161 Bonita, 2006 Bottoni, 2013, Characteristics of spring waters in Budapest: A short review, Microchemical Journal, 110, 770, 10.1016/j.microc.2013.09.002 Boy-Roura, 2013, Temporal analysis of spring water data to assess nitrate inputs to groundwater in an agricultural area (Osona, NE Spain), The Science of the Total Environment, 452–453, 433, 10.1016/j.scitotenv.2013.02.065 Bozau, 2013, Hydrogeochemical characteristics of spring water in the Harz Mountains, Germany, Chemie der Erde, 73, 283, 10.1016/j.chemer.2013.02.002 Castellazzi, 2017, InSAR to support sustainable urbanization over compacting aquifers: The case of Toluca Valley, Mexico, International Journal of Applied Earth Observation and Geoinformation, 63, 33, 10.1016/j.jag.2017.06.011 Castellazzi, 2016, Groundwater depletion in Central Mexico: Use of GRACE and InSAR to support water resources management, Water Resources Research, 52, 5985, 10.1002/2015WR018211 Chávez, 2006, El agua subterránea en México: Condición actual y retos para un manejo sostenible, Boletin Geologico Y Minero, 117, 115 Civita, 2008, An improved method for delineating source protection zones for karst springs based on analysis of recession curve data, Hydrogeology Journal, 16, 855, 10.1007/s10040-008-0283-4 CONABIO, 2008 CONAGUA, 2015 CONAPO, 2012 De Miguel, 2005, Hydrogeological regionalization of the Holguin province, Republic of Cuba, Mineria y Geologia, 21, 1 Demek, 1972 Drobne, 2009, Multi-attribute decision analysis in GIS: Weighted linear combination and ordered weighted averaging, Informatica, 33, 459 Eastman, 2016 Elhatip, 2001, Roles of hydrogeochemical evaluations in estimating protection zones of Koçpınar springs in Aksaray, central Anatolia, Turkey, Environmental Geology, 40, 1010, 10.1007/s002540100291 Esquivel, 2015, Groundwater monitoring network design using GIS and Multicriteria Analysis, Water Resources Management, 29, 3175, 10.1007/s11269-015-0989-8 Esteller, 2017, Hydrogeochemical characteristics of a volcanic-sedimentary aquifer with special emphasis on Fe and Mn content: A case study in Mexico, Journal of Geochemical Exploration, 180, 113, 10.1016/j.gexplo.2017.06.002 Galleani, 2011, Validation of a vulnerability estimator for spring protection areas: The VESPA index, Journal of Hydrology, 3, 233, 10.1016/j.jhydrol.2010.11.012 GEM, 2013 Genchi, 2011, Clasificación geomorfológica automatizada en terrazas del Noreste del Macizo Norpatagónico, Argentina, Geofocus Revista Internacional de Ciencia y Tecnología de la Información Geográfica, 182 Gil, 2015 González, 2006, Flujo, calidad de agua y uso potential de los manantiales de la microcuenca Atécuaro, Morelia, Michoacán, México, Biologica, 1, 31 Hajkowicz, 2007, A review of multiple criteria analysis for water resource planning and management, Water Resources Management, 21, 1553, 10.1007/s11269-006-9112-5 Hanich, 2008, A multicriteria approach for well drilling in productive zones of fissured systems, Hydrogeology Sciences Journal, 53, 192, 10.1623/hysj.53.1.192 Hao, 2012, Investigation of karstic hydrological processes of Niangziguan Springs (North China) using wavelet analysis, Hidrological Processes, 26, 3062, 10.1002/hyp.8265 Hu, 2008, Simulation of spring flows from a karst aquifer with an artificial neural network, Hydrological Processes, 22, 596, 10.1002/hyp.6625 2014 Jang, 2011, Characterizing hydrochemical properties of springs in Taiwan based on their geological origins, Environmental Monitoring and Assessment, 184, 63, 10.1007/s10661-011-1947-4 Jenness, 2006 Jiménez, 2011, Waterborne diseases in the state of Mexico, Mexico (2000–2005), Journal of Water and Health, 9, 200, 10.2166/wh.2010.149 Jukić, 2008, Estimating parameters of groundwater recharge model in frequency domain: Karst springs Jadro and Zˇ rnovnica, Hydrological Processes, 22, 4532, 10.1002/hyp.7057 Kresic, 2010, Types and classifications of springs Kreye, 1996 LAN, 2014, Ley de Aguas Nacionales (Última reforma publicada Liñán, 2001, Hydrodynamic and hydrochemical characterization of the Río Jorox spring (hydrogeological unit Yunquera- Nieves, Málaga), Geogaceta, 87 López, 2009 Manzano, 2018, Identification of variations in the climatic conditions of the Lerma-Chapala-Santiago watershed by comparative analysis of time series, Advances in Meteorology, 1, 10.1155/2018/1098942 Marín, 2010, Delineating Source Protection Zones of Karst Springs. The Case Study of Villanueva del Rosario Spring (Southern Spain), Environmental Earth Sciences, 317, 10.1007/978-3-642-12486-0_49 Martin del Campo, 2014, Impacts of urbanization on groundwater hydrodynamics and hydrochemistry of the Toluca Valley Aquifer (Mexico), Environmental Monitoring and Assessment, 186, 2979, 10.1007/s10661-013-3595-3 Martin, 2013, Trace metal contamination of mineral spring water in an historical mining area in regional Victoria, Australia, Journal of Asian Earth Sciences, 77, 262, 10.1016/j.jseaes.2013.04.035 Martínez, 2014, Modelling discharge through artesian springs based on a highresolution highresolution, Hidrological Processes, 28, 2251, 10.1002/hyp.9760 1995 Navarro, 2012, Erosion rates and geomorphological indexes in three coastal basins south of the Baja California peninsula, Mexico, Boletín de la Sociedad Geológica Mexicana, 64, 229 OPS, 2004 Oropeza, 2010 2006 Peña, 2012 Pochon, 2008, Groundwater protection in fractured media: A vulnerability-based approach for delineating protection zones in Switzerland, Hydrogeology Journal, 16, 1267, 10.1007/s10040-008-0323-0 Qian, 2006, Fractured-karst spring-flow protections: A case study in Jinan, China, Hydrogeology Journal, 14, 1192, 10.1007/s10040-006-0061-0 Saaty, 1977, A scaling method for priorities in hierarchical structures, Journal of Mathematical Psychology, 15, 234, 10.1016/0022-2496(77)90033-5 Santos, 2017, Regionalization and susceptibility assessment to daily precipitation extremes in mainland Portugal, Applied Geography, 86, 128, 10.1016/j.apgeog.2017.06.020 Schmoll, 2006 Silva, 2010, Vulnerabilidad acuífera como herramienta de política ambiental para la protección de manantiales en Michoacán, México, Revista Internacional de Contaminación Ambiental, 26, 5 Silva, 2016, Manantiales de la cuenca del río Duero Michoacán: operación, calidad y cantidad, Revista Internacional de Contaminación Ambiental, 32, 55 Starn, 2018, Regionalization of groundwater residence time using metamodeling, Water Resources Research, 54, 6357, 10.1029/2017WR021531 Stolp, 2010, Age dating base flow at springs and gaining streams using helium‐3 and tritium: Fischa‐Dagnitz system, southern Vienna Basin, Austria, Water Resources Research, 46, 1, 10.1029/2009WR008006 Tarafdar, 2013, Understanding the dynamics of high and low spring flow: A key to managing the water resources in a small urbanized hillslope of lesser Himalaya, India, Environmental Earth Sciences, 70, 2107, 10.1007/s12665-011-1493-y Terzić, 2012, Hydrogeological investigation of karst system properties by common use of diverse methods: A case study of Lička Jesenica springs in Dinaric karst of Croatia, Hidrological Processes, 26, 3302, 10.1002/hyp.9194 2014 2012 Vargas, 2002, Manantiales de una parte del Valle Central de Costa Rica, Revista Geologica de America Central, 27, 39 Weiss, 2001 WHO, 2014 Żelazny, 2011, Spatiotemporal dynamics of spring and stream water chemistry in a high-mountain area, Environmental Pollution, 159, 1048, 10.1016/j.envpol.2010.11.021 Żelazny, 2013, Hypsometric factors for differences in chemical composition of Tatra National park spring waters, Polish Journal of Environmental Studies, 22, 289 Zinck, 2012 Zuñiga, 2011