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PUBMED FOR HANDHELDS

Journal Abstract Search


318 related items for PubMed ID: 21740423

  • 21. Regional transport modelling for nitrate trend assessment and forecasting in a chalk aquifer.
    Orban P, Brouyère S, Batlle-Aguilar J, Couturier J, Goderniaux P, Leroy M, Maloszewski P, Dassargues A.
    J Contam Hydrol; 2010 Oct 21; 118(1-2):79-93. PubMed ID: 20864207
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  • 22. Interpretation of environmental tracers in groundwater systems with stagnant water zones.
    Maloszewski P, Stichler W, Zuber A.
    Isotopes Environ Health Stud; 2004 Mar 21; 40(1):21-33. PubMed ID: 15085981
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  • 23. Groundwater quality impacts from the land application of treated municipal wastewater in a large karstic spring basin: chemical and microbiological indicators.
    Katz BG, Griffin DW, Davis JH.
    Sci Total Environ; 2009 Apr 01; 407(8):2872-86. PubMed ID: 19232432
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  • 24. Using hydrochemical data and modelling to enhance the knowledge of groundwater flow and quality in an alluvial aquifer of Zagreb, Croatia.
    Marković T, Brkić Ž, Larva O.
    Sci Total Environ; 2013 Aug 01; 458-460():508-16. PubMed ID: 23707721
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  • 25. Assessment of artificial groundwater recharge potential through estimation of permeability values from infiltration and aquifer tests in unconsolidated alluvial formations in coastal areas.
    Masoud MHZ, Basahi JM, Zaidi FK.
    Environ Monit Assess; 2018 Dec 28; 191(1):31. PubMed ID: 30591977
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  • 26. Migration of contaminants through the unsaturated zone overlying the Hesbaye chalky aquifer in Belgium: a field investigation.
    Brouyère S, Dassargues A, Hallet V.
    J Contam Hydrol; 2004 Aug 28; 72(1-4):135-64. PubMed ID: 15240170
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  • 27. Potential effects on groundwater quality associated with infiltrating stormwater through dry wells for aquifer recharge.
    Edwards EC, Nelson C, Harter T, Bowles C, Li X, Lock B, Fogg GE, Washburn BS.
    J Contam Hydrol; 2022 Apr 28; 246():103964. PubMed ID: 35180606
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  • 28. Hydrochemical evolution and groundwater flow processes in the Galilee and Eromanga basins, Great Artesian Basin, Australia: a multivariate statistical approach.
    Moya CE, Raiber M, Taulis M, Cox ME.
    Sci Total Environ; 2015 Mar 01; 508():411-26. PubMed ID: 25497681
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  • 29. Identifying local and regional groundwater in basins: chemical and stable isotopic attributes of multivariate classification of hydrochemical data, the Lower Virgin River Basin, Nevada, Arizona and Utah, U.S.A.
    Asante J, Kreamer DK.
    Isotopes Environ Health Stud; 2018 Aug 01; 54(4):370-391. PubMed ID: 29557185
    [Abstract] [Full Text] [Related]

  • 30. Distribution and variability of redox zones controlling spatial variability of arsenic in the Mississippi River Valley alluvial aquifer, southeastern Arkansas.
    Sharif MU, Davis RK, Steele KF, Kim B, Hays PD, Kresse TM, Fazio JA.
    J Contam Hydrol; 2008 Jul 29; 99(1-4):49-67. PubMed ID: 18486990
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  • 31. Processes conducive to the release and transport of arsenic into aquifers of Bangladesh.
    Polizzotto ML, Harvey CF, Sutton SR, Fendorf S.
    Proc Natl Acad Sci U S A; 2005 Dec 27; 102(52):18819-23. PubMed ID: 16357194
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  • 32. Occurrence and concentrations of pharmaceutical compounds in groundwater used for public drinking-water supply in California.
    Fram MS, Belitz K.
    Sci Total Environ; 2011 Aug 15; 409(18):3409-17. PubMed ID: 21684580
    [Abstract] [Full Text] [Related]

  • 33. Effects of groundwater development on uranium: Central Valley, California, USA.
    Jurgens BC, Fram MS, Belitz K, Burow KR, Landon MK.
    Ground Water; 2010 Aug 15; 48(6):913-28. PubMed ID: 19788559
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  • 34. The unusual and large drawdown response of buried-valley aquifers to pumping.
    van der Kamp G, Maathuis H.
    Ground Water; 2012 Aug 15; 50(2):207-15. PubMed ID: 21671937
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  • 35. Estimation of groundwater recharge via deuterium labelling in the semi-arid Cuvelai-Etosha Basin, Namibia.
    Beyer M, Gaj M, Hamutoko JT, Koeniger P, Wanke H, Himmelsbach T.
    Isotopes Environ Health Stud; 2015 Aug 15; 51(4):533-52. PubMed ID: 26414647
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  • 36. Revisiting a classification scheme for U.S.-Mexico alluvial basin-fill aquifers.
    Hibbs BJ, Darling BK.
    Ground Water; 2005 Aug 15; 43(5):750-63. PubMed ID: 16149972
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  • 37. Temporal changes in the vertical distribution of flow and chloride in deep wells.
    Izbicki JA, Christensen AH, Newhouse MW, Smith GA, Hanson RT.
    Ground Water; 2005 Aug 15; 43(4):531-44. PubMed ID: 16029179
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  • 38. Contrasting influence of geology on E. coli and arsenic in aquifers of Bangladesh.
    Leber J, Rahman MM, Ahmed KM, Mailloux B, van Geen A.
    Ground Water; 2011 Aug 15; 49(1):111-23. PubMed ID: 20236332
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  • 39. Natural recharge to sustainable yield from the barind aquifer: a tool in preparing effective management plan of groundwater resources.
    Monirul Islam M, Kanungoe P.
    Water Sci Technol; 2005 Aug 15; 52(12):251-8. PubMed ID: 16477993
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  • 40. Evolution model of δ³⁴S and δ¹⁸O in dissolved sulfate in volcanic fan aquifers from recharge to coastal zone and through the Jakarta urban area, Indonesia.
    Hosono T, Delinom R, Nakano T, Kagabu M, Shimada J.
    Sci Total Environ; 2011 Jun 01; 409(13):2541-54. PubMed ID: 21507462
    [Abstract] [Full Text] [Related]


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