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 in | Environmental monitoring and assessment Vol. 191; no. 12; p. 768 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Cham
Springer International Publishing
01.12.2019
Springer Nature B.V |
Subjects | |
Online Access | Get full text |
ISSN | 0167-6369 1573-2959 1573-2959 |
DOI | 10.1007/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 |
Author_xml | – sequence: 1 givenname: Francesco surname: Rufino fullname: Rufino, Francesco organization: Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, University of Campania “Luigi Vanvitelli” – sequence: 2 givenname: Gianluigi orcidid: 0000-0003-0905-4729 surname: Busico fullname: Busico, Gianluigi email: gianluigi.busico@unicampania.it organization: Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, University of Campania “Luigi Vanvitelli” – sequence: 3 givenname: Emilio surname: Cuoco fullname: Cuoco, Emilio organization: Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, University of Campania “Luigi Vanvitelli” – sequence: 4 givenname: Thomas H. surname: Darrah fullname: Darrah, Thomas H. organization: School of Earth Sciences, The Ohio State University – sequence: 5 givenname: Dario surname: Tedesco fullname: Tedesco, Dario 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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Keywords | Groundwater quality index Nitrate pollution Alluvial aquifer Vulnerability assessment |
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Implications for geochemical surveyEnvironmental Monitoring and Assessment20151872461:CAS:528:DC%2BC2MXit1Cku7w%3D10.1007/s10661-015-4307-y BusicoGKazakisNColombaniNMastrociccoMVoudourisKTedescoDA modified SINTACS method for groundwater vulnerability and pollution risk assessment in highly anthropized regions based on NO3− and SO42− concentrationsScience of The Total Environment2017609151215231:CAS:528:DC%2BC2sXht12lsLrO10.1016/j.scitotenv.2017.07.257 De VivoBRolandiGGansPBCalvertABohrosonWASperaFJBelkinHENew constraints on the pyroclastic eruptive history of the Campanian volcanic plain (Italy)Mineralogy and Petrology200173476510.1007/s007100170010 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). BarraDRomanoPSantoACampajolaLRocaVTunizCThe Versilian transgression in the Volturno river plain (Campania, Southern Italy): paleoenvironmental history and chronological dataIl Quaternario.19969445458 ENEA, Agenzia nazionale per le nuove tecnologie, l'energia e lo sviluppo economico sostenibile, (2002), Progetto regi lagni, Vol. 2-Stato della qualità delle acque. available online at: http://www.bologna.enea.it/ambtd/regi-lagni/volume-2/3-vol2-ac_sot.html Busico, G., Mastrocicco, M., Cuoco, E., Sirna, M., & Tedesco, D. (2019). Protection from natural and anthropogenic sources: a new rating methodology to delineate “nitrate vulnerable zones”. Environmental Earth Sciences, 78(4). https://doi.org/10.1007/s12665-019-8118-2 AllenRGWrightJLPruittWOPereiraLSJensenMEChapter 8. Water Requirements“Water requirements”, in design and operation of farm irrigation systems20072American Society of Agricultural and Biological Engineers, Michigan (US)St. Joseph20822810.13031/2013.23691 ViaroliSMastrorilloLLottiFPaolucciVMazzaRThe groundwater budget: a tool for preliminary estimation of the hydraulic connection between neighboring aquifersJournal of Hydrology2018556728610.1016/j.jhydrol.2017.10.066 ArauzoMVulnerability of groundwater resources to nitrate pollution: a simple and effective procedure for delimiting nitrate vulnerable zonesScience of The Total Environment20175757998121:CAS:528:DC%2BC28Xhs1amt73I10.1016/j.scitotenv.2016.09.139 Di GennaroAI sistemi di terra della Campania2002FirenzeSELCA CARG project: available online at: http://www.isprambiente.gov.it/it/cartografia/carte-geologiche-e-geotematiche/carta-geologica-alla-scala-1-a-50000. El FadelMTomaszkiewiczMAdraYSadekSNajmMAGIS-based assessment for the development of a groundwater quality index towards sustainable aquifer managementWater Resources Management2014283471348710.1007/s11269-014-0683-2 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 MastrociccoMColombaniNPalpacelliSFertilizers mobilization in alluvial aquifer: laboratory experimentsEnvironmental Geology2009567137113811:CAS:528:DC%2BD1MXhtVWns78%3D10.1007/s00254-008-1232-1 ASTER Global Digital Elevation Map Announcement 2019: available on line at: https://asterweb.jpl.nasa.gov/gdem.asp. CornielloADucciDPossible sources of nitrate in groundwater of Acerra area (Piana Campana)Engineering Hydro Environmental Geology200912155164 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 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 G Busico (7978_CR10) 2017; 10 B Gambardella (7978_CR27) 2005; 20 M El Fadel (7978_CR25) 2014; 28 A Pisciotta (7978_CR46) 2015; 156 N Kazakis (7978_CR31) 2015; 74 A Corniello (7978_CR19) 2010; 1 RG Allen (7978_CR2) 2007 7978_CR6 D Barra (7978_CR8) 1996; 9 Y Li (7978_CR35) 2016; 75 7978_CR4 C Thivya (7978_CR50) 2013; 15 7978_CR3 E Cuoco (7978_CR20) 2015; 187 7978_CR1 Y Zhang (7978_CR54) 2018; 15 7978_CR42 B Misstear (7978_CR43) 2006 National Research Council (7978_CR45) 1993 IS Babiker (7978_CR7) 2007; 21 Micòl Mastrocicco (7978_CR40) 2019; 11 A Lumb (7978_CR36) 2011; 3 G Busico (7978_CR11) 2017; 609 A Corniello (7978_CR18) 2014; 137 7978_CR33 A Di Gennaro (7978_CR22) 2002 7978_CR28 G Rolandi (7978_CR48) 2003; 79 MA Bove (7978_CR9) 2011; 109 Gianluigi Busico (7978_CR12) 2018; 234 M Lasagna (7978_CR34) 2018; 77 A Corniello (7978_CR17) 2009; 12 7978_CR24 D Ducci (7978_CR23) 2012; 67 William K. Eymold (7978_CR26) 2018; 56 M Mastrocicco (7978_CR39) 2011; 63 Jennifer S. Harkness (7978_CR30) 2018; 56 Anna Matzeu (7978_CR41) 2017; 184 M Vadiati (7978_CR51) 2016; 184 C Rezza (7978_CR47) 2018; 184 7978_CR16 D Machiwal (7978_CR37) 2011; 174 S Singh (7978_CR49) 2018; 190 M Arauzo (7978_CR5) 2017; 575 B De Vivo (7978_CR21) 2001; 73 M Mastrocicco (7978_CR38) 2009; 56 S Viaroli (7978_CR52) 2018; 556 O Gonzalez-Fernandez (7978_CR29) 2011; 220 MR Mohebbi (7978_CR44) 2013; 30 7978_CR14 7978_CR13 M Civita (7978_CR15) 2004; 43 HH Khan (7978_CR32) 2011; 63 7978_CR53 |
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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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