Evaluating the suitability of urban groundwater resources for drinking water and irrigation purposes: an integrated approach in the Agro-Aversano area of Southern Italy

Deterioration of groundwater quality due to the introduction of pollutants from natural and anthropic sources has become a major environmental issue. We tested three methodologies in assessing groundwater quality and intrinsic aquifer vulnerability in the Agro-Aversano area (Southern Italy). A geogr...

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Published inEnvironmental monitoring and assessment Vol. 191; no. 12; p. 768
Main Authors Rufino, Francesco, Busico, Gianluigi, Cuoco, Emilio, Darrah, Thomas H., Tedesco, Dario
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.12.2019
Springer Nature B.V
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Online AccessGet full text
ISSN0167-6369
1573-2959
1573-2959
DOI10.1007/s10661-019-7978-y

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Abstract Deterioration of groundwater quality due to the introduction of pollutants from natural and anthropic sources has become a major environmental issue. We tested three methodologies in assessing groundwater quality and intrinsic aquifer vulnerability in the Agro-Aversano area (Southern Italy). A geographic information system (GIS)-based groundwater quality index (GQI) was realized to assess groundwater quality for drinking and irrigation use and, in parallel, standard SINTACS was applied to evaluate the intrinsic vulnerability of the aquifer. Nitrate concentrations and sodium absorption ratio (SAR) in groundwater samples were used to verify the reliability of vulnerability data. GQI analysis pointed to a general poor quality of groundwater both for drinking and irrigation use, especially in sub-urban areas. The spatial pattern of water quality from GQI analysis was positively related to nitrate and fluoride concentrations for drinking use and to bicarbonate and sodium concentrations for irrigation use, whose levels exceeded the WHO and FAO recommended thresholds, respectively. Standard SINTACS was found to be inadequate for describing the aquifer state, its results showing no correlation with nitrate concentration or SAR. Because of this inconsistency, we tested a novel approach combining GQI with SINTACS analysis. Results showed positive correlation with nitrate ( r  = 0.63) and SAR ( r  = 0.64) contents, thus pointing to combined SINTACS-GQI as a more reliable approach than standard methodologies.
AbstractList Deterioration of groundwater quality due to the introduction of pollutants from natural and anthropic sources has become a major environmental issue. We tested three methodologies in assessing groundwater quality and intrinsic aquifer vulnerability in the Agro-Aversano area (Southern Italy). A geographic information system (GIS)-based groundwater quality index (GQI) was realized to assess groundwater quality for drinking and irrigation use and, in parallel, standard SINTACS was applied to evaluate the intrinsic vulnerability of the aquifer. Nitrate concentrations and sodium absorption ratio (SAR) in groundwater samples were used to verify the reliability of vulnerability data. GQI analysis pointed to a general poor quality of groundwater both for drinking and irrigation use, especially in sub-urban areas. The spatial pattern of water quality from GQI analysis was positively related to nitrate and fluoride concentrations for drinking use and to bicarbonate and sodium concentrations for irrigation use, whose levels exceeded the WHO and FAO recommended thresholds, respectively. Standard SINTACS was found to be inadequate for describing the aquifer state, its results showing no correlation with nitrate concentration or SAR. Because of this inconsistency, we tested a novel approach combining GQI with SINTACS analysis. Results showed positive correlation with nitrate (r = 0.63) and SAR (r = 0.64) contents, thus pointing to combined SINTACS-GQI as a more reliable approach than standard methodologies.
Deterioration of groundwater quality due to the introduction of pollutants from natural and anthropic sources has become a major environmental issue. We tested three methodologies in assessing groundwater quality and intrinsic aquifer vulnerability in the Agro-Aversano area (Southern Italy). A geographic information system (GIS)-based groundwater quality index (GQI) was realized to assess groundwater quality for drinking and irrigation use and, in parallel, standard SINTACS was applied to evaluate the intrinsic vulnerability of the aquifer. Nitrate concentrations and sodium absorption ratio (SAR) in groundwater samples were used to verify the reliability of vulnerability data. GQI analysis pointed to a general poor quality of groundwater both for drinking and irrigation use, especially in sub-urban areas. The spatial pattern of water quality from GQI analysis was positively related to nitrate and fluoride concentrations for drinking use and to bicarbonate and sodium concentrations for irrigation use, whose levels exceeded the WHO and FAO recommended thresholds, respectively. Standard SINTACS was found to be inadequate for describing the aquifer state, its results showing no correlation with nitrate concentration or SAR. Because of this inconsistency, we tested a novel approach combining GQI with SINTACS analysis. Results showed positive correlation with nitrate (r = 0.63) and SAR (r = 0.64) contents, thus pointing to combined SINTACS-GQI as a more reliable approach than standard methodologies.Deterioration of groundwater quality due to the introduction of pollutants from natural and anthropic sources has become a major environmental issue. We tested three methodologies in assessing groundwater quality and intrinsic aquifer vulnerability in the Agro-Aversano area (Southern Italy). A geographic information system (GIS)-based groundwater quality index (GQI) was realized to assess groundwater quality for drinking and irrigation use and, in parallel, standard SINTACS was applied to evaluate the intrinsic vulnerability of the aquifer. Nitrate concentrations and sodium absorption ratio (SAR) in groundwater samples were used to verify the reliability of vulnerability data. GQI analysis pointed to a general poor quality of groundwater both for drinking and irrigation use, especially in sub-urban areas. The spatial pattern of water quality from GQI analysis was positively related to nitrate and fluoride concentrations for drinking use and to bicarbonate and sodium concentrations for irrigation use, whose levels exceeded the WHO and FAO recommended thresholds, respectively. Standard SINTACS was found to be inadequate for describing the aquifer state, its results showing no correlation with nitrate concentration or SAR. Because of this inconsistency, we tested a novel approach combining GQI with SINTACS analysis. Results showed positive correlation with nitrate (r = 0.63) and SAR (r = 0.64) contents, thus pointing to combined SINTACS-GQI as a more reliable approach than standard methodologies.
Deterioration of groundwater quality due to the introduction of pollutants from natural and anthropic sources has become a major environmental issue. We tested three methodologies in assessing groundwater quality and intrinsic aquifer vulnerability in the Agro-Aversano area (Southern Italy). A geographic information system (GIS)-based groundwater quality index (GQI) was realized to assess groundwater quality for drinking and irrigation use and, in parallel, standard SINTACS was applied to evaluate the intrinsic vulnerability of the aquifer. Nitrate concentrations and sodium absorption ratio (SAR) in groundwater samples were used to verify the reliability of vulnerability data. GQI analysis pointed to a general poor quality of groundwater both for drinking and irrigation use, especially in sub-urban areas. The spatial pattern of water quality from GQI analysis was positively related to nitrate and fluoride concentrations for drinking use and to bicarbonate and sodium concentrations for irrigation use, whose levels exceeded the WHO and FAO recommended thresholds, respectively. Standard SINTACS was found to be inadequate for describing the aquifer state, its results showing no correlation with nitrate concentration or SAR. Because of this inconsistency, we tested a novel approach combining GQI with SINTACS analysis. Results showed positive correlation with nitrate ( r  = 0.63) and SAR ( r  = 0.64) contents, thus pointing to combined SINTACS-GQI as a more reliable approach than standard methodologies.
ArticleNumber 768
Author Rufino, Francesco
Darrah, Thomas H.
Cuoco, Emilio
Tedesco, Dario
Busico, Gianluigi
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  surname: Busico
  fullname: Busico, Gianluigi
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  organization: Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, University of Campania “Luigi Vanvitelli”
BackLink https://www.ncbi.nlm.nih.gov/pubmed/31761967$$D View this record in MEDLINE/PubMed
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Issue 12
Keywords Groundwater quality index
Nitrate pollution
Alluvial aquifer
Vulnerability assessment
Language English
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PublicationSubtitle An International Journal Devoted to Progress in the Use of Monitoring Data in Assessing Environmental Risks to Man and the Environment
PublicationTitle Environmental monitoring and assessment
PublicationTitleAbbrev Environ Monit Assess
PublicationTitleAlternate Environ Monit Assess
PublicationYear 2019
Publisher Springer International Publishing
Springer Nature B.V
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BusicoGianluigiCuocoEmilioKazakisNerantzisColombaniNicolòMastrociccoMicòlTedescoDarioVoudourisKonstantinosMultivariate statistical analysis to characterize/discriminate between anthropogenic and geogenic trace elements occurrence in the Campania Plain, Southern ItalyEnvironmental Pollution20182342602691:CAS:528:DC%2BC2sXhvVygsLzL10.1016/j.envpol.2017.11.053
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Gonzalez-FernandezOQueraltICarvalhoMLGarciaGLead, zinc, arsenic and copper pollution in the alluvial plain of a mining wadi: the Beal case (Cartagena-la union mining district, SE Spain)Water, Air, & Soil Pollution20112201–42792911:CAS:528:DC%2BC3MXpvFCksbg%3D10.1007/s11270-011-0753-5
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Aller, L., Bennet, T., Lehr, J.H., Petty, R.J., Hackett, G., 1987. DRASTIC: a standardized system for evaluating groundwater pollution potential using hydrogeological setting. (EPA/600/2-87/035).
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GambardellaBMariniLManeschiIDissolved potassium in the shallow groundwaters circulating in the volcanic rocks of central-southern ItalyApplied Geochemistry2005208758971:CAS:528:DC%2BD2MXjt1Gkur0%3D10.1016/j.apgeochem.2004.12.001
WHO, World Health Organization, 2017 Guidelines for drinking-water quality, 4thedn. Incorporating the
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References_xml – reference: BabikerISHohamedMAAHiyamaTAssessing groundwater quality using GISWater Resources Management200721469971510.1007/s11269-006-9059-6
– reference: BusicoGCuocoESirnaMMastrociccoMTedescoDAquifer vulnerability and potential risk assessment: application to an intensely cultivated and densely populated area in Southern ItalyArabian Journal of Geosciences201710102222131:CAS:528:DC%2BC2sXotVKnt70%3D10.1007/s12517-017-2996-y
– reference: LiYZhangZFeiYChenHQianYDunYInvestigation of quality and pollution characteristics of groundwater in the Hutuoriver alluvial plain, North China plainEnvironment and Earth Science20167571101:CAS:528:DC%2BC28XkvFGksrc%3D10.1007/s12665-016-5366-2
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– reference: National Research CouncilGroundwater vulnerability assessment, contamination potential under conditions of uncertaintyCommittee on techniques for assessing ground water vulnerability, water science and technology board, commission on geosciences environment and resources1993WashingtonNationalAcademy Press
– reference: MatzeuAnnaSecciRominaUrasGabrieleMethodological approach to assessment of groundwater contamination risk in an agricultural areaAgricultural Water Management2017184465810.1016/j.agwat.2017.01.003
– reference: ThivyaCChidambaramSSingarajaCThilagavathiRPrasannaMVJainabIStudy on the significance of lithology in ground-water quality of Madurai district, Tamil Nadu (India)Environment, Development and Sustainability20131551365138710.1007/s10668-013-9439-z
– reference: CuocoEDarrahTHBuonoGVerrengiaGDe FrancescoSEymoldWKTedescoDInorganic contaminants from diffuse pollution in shallow groundwater of the Campanian plain (southern Italy). Implications for geochemical surveyEnvironmental Monitoring and Assessment20151872461:CAS:528:DC%2BC2MXit1Cku7w%3D10.1007/s10661-015-4307-y
– reference: CornielloADucciDHydrogeochemical characterization of the main aquifer of the “LitoraleDomizio-Agro Aversano NIPS” (Campania - southern Italy)Journal of Geochemical Exploration20141371101:CAS:528:DC%2BC3sXhsl2gsb7I10.1016/j.gexplo.2013.10.016
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– reference: LumbASharmaTCBibeaultJFA review of genesis and evolution of water quality index (WQI) and some future directionsWater Quality Exposure and Health201131112410.1007/s12403-011-0040-0
– reference: ViaroliSMastrorilloLLottiFPaolucciVMazzaRThe groundwater budget: a tool for preliminary estimation of the hydraulic connection between neighboring aquifersJournal of Hydrology2018556728610.1016/j.jhydrol.2017.10.066
– reference: Allen, R.G., Pereira, L.S., Raes, D., Smith,M., (1998). Crop Evapotranspiration – Guidelines for Computing Crop Water Requirements. Food and Agriculture Organization of the United Nations, FAO, Rome, Italy
– reference: MachiwalDJhaMKMalBCGIS-based assessment and characterization of groundwater quality in a hardrock hilly terrain of Western IndiaEnvironmental Monitoring and Assessment20111746456631:CAS:528:DC%2BC3MXht12gs7g%3D10.1007/s10661-0101485-5
– reference: Giaccio, B., Hajdas, I., Isaia, R., Deino, A., & Nomade, S. (2017). High-precision 14C and 40Ar/39Ar dating of the Campanian Ignimbrite (Y-5) reconciles the time-scales of climatic-cultural processes at 40 ka. Scientific Reports, 7(1). https://doi.org/10.1038/srep45940.
– reference: MastrociccoMColombaniNPalpacelliSCastaldelliGLarge tank experiment on nitrate fate and transport: the role of permeability distributionEnvironmental Earth Sciences20116359039141:CAS:528:DC%2BC3MXntFGrtro%3D10.1007/s12665-010-0759-0
– reference: El FadelMTomaszkiewiczMAdraYSadekSNajmMAGIS-based assessment for the development of a groundwater quality index towards sustainable aquifer managementWater Resources Management2014283471348710.1007/s11269-014-0683-2
– reference: De VivoBRolandiGGansPBCalvertABohrosonWASperaFJBelkinHENew constraints on the pyroclastic eruptive history of the Campanian volcanic plain (Italy)Mineralogy and Petrology200173476510.1007/s007100170010
– reference: KhanHHKhanAAhmedSPerrinJGIS-based impact assessment of land-use changes on groundwater quality: study from a rapidly urbanizing region of South IndiaEnvironment and Earth Science2011631289130210.1007/s12665-010-0801-2
– reference: Gonzalez-FernandezOQueraltICarvalhoMLGarciaGLead, zinc, arsenic and copper pollution in the alluvial plain of a mining wadi: the Beal case (Cartagena-la union mining district, SE Spain)Water, Air, & Soil Pollution20112201–42792911:CAS:528:DC%2BC3MXpvFCksbg%3D10.1007/s11270-011-0753-5
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– reference: RolandiGBellucciFHeizlerMTBelkinHEDe VivoBTectonic controls on the genesis of ignimbrites from the Campanian volcanic zone, southern ItalyMineralogy and Petrology2003791–23311:CAS:528:DC%2BD3sXoslWktLg%3D10.1007/s00710-003-0014-4
– reference: BarraDRomanoPSantoACampajolaLRocaVTunizCThe Versilian transgression in the Volturno river plain (Campania, Southern Italy): paleoenvironmental history and chronological dataIl Quaternario.19969445458
– reference: MIPAAF. Agrometeorological Online Database. 2018. Available online: https://www.politicheagricole.it/flex/cm/pages/ServeBLOB.php/L/IT/IDPagina/7012.
– reference: ZhangYWeissmannGFoggGLuBSunHZhengCAssessment of groundwater susceptibility to non-point source contaminants using three-dimensional transient indexesInternational Journal of Environmental Research and Public Health201815611771:CAS:528:DC%2BC1cXisVersbbJ10.3390/ijerph15061177
– reference: CornielloADucciDRotellaMTrifuoggiMRuggieriGHydrogeology and hydrogeochemistry of the plain between MT. Massico and the river Volturno (Campania region, Italy)Italian Journal of Engineering Geology and Environment20101516410.4408/IJEGE.2010-01.O-04
– reference: GambardellaBMariniLManeschiIDissolved potassium in the shallow groundwaters circulating in the volcanic rocks of central-southern ItalyApplied Geochemistry2005208758971:CAS:528:DC%2BD2MXjt1Gkur0%3D10.1016/j.apgeochem.2004.12.001
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– reference: BusicoGianluigiCuocoEmilioKazakisNerantzisColombaniNicolòMastrociccoMicòlTedescoDarioVoudourisKonstantinosMultivariate statistical analysis to characterize/discriminate between anthropogenic and geogenic trace elements occurrence in the Campania Plain, Southern ItalyEnvironmental Pollution20182342602691:CAS:528:DC%2BC2sXhvVygsLzL10.1016/j.envpol.2017.11.053
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Snippet Deterioration of groundwater quality due to the introduction of pollutants from natural and anthropic sources has become a major environmental issue. We tested...
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SubjectTerms absorption
Agriculture
Aquifers
Atmospheric Protection/Air Quality Control/Air Pollution
Bicarbonates
Canals
Contamination
drinking
Drinking behavior
Drinking water
Drinking Water - standards
Earth and Environmental Science
Ecology
Ecotoxicology
Environment
Environmental Management
Environmental Monitoring - methods
Fluorides
Fluorides - analysis
Geographic Information Systems
Geographical information systems
Geology
Groundwater
Groundwater - analysis
Groundwater - standards
Groundwater flow
Groundwater quality
Groundwater resources
Information systems
Irrigation
Irrigation water
Italy
Land use
Minerals - analysis
Monitoring/Environmental Analysis
Nitrates
Nitrates - analysis
pollutants
Pollution
Remote sensing
Reproducibility of Results
Sodium
Urban areas
Volcanoes
Water analysis
Water Pollutants, Chemical - analysis
Water Quality
Water quality assessments
Water resources
Water sampling
Water Supply - standards
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Title Evaluating the suitability of urban groundwater resources for drinking water and irrigation purposes: an integrated approach in the Agro-Aversano area of Southern Italy
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