Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Barnes, S.
Parnell, J.
Ruffell, A.H.
and
Kalin, R.M.
2003.
Groundwater circulation patterns and isotope geochemistry in the Chalk of Northern Ireland.
Quarterly Journal of Engineering Geology and Hydrogeology,
Vol. 36,
Issue. 1,
p.
59.
Frenzel, Burkhard
2007.
Progress in Botany.
Vol. 68,
Issue. ,
p.
336.
Carreira, Paula M.
Marques, José M.
Graça, Rui C.
and
Aires-Barros, Luís
2008.
Radiocarbon application in dating “complex” hot and cold CO2-rich mineral water systems: A review of case studies ascribed to the northern Portugal.
Applied Geochemistry,
Vol. 23,
Issue. 10,
p.
2817.
Galego Fernandes, P.
and
Carreira, P.M.
2008.
Isotopic evidence of aquifer recharge during the last ice age in Portugal.
Journal of Hydrology,
Vol. 361,
Issue. 3-4,
p.
291.
Jiráková, Hana
Huneau, Frédéric
Celle-Jeanton, Hélène
Hrkal, Zbyněk
and
Le Coustumer, Philippe
2009.
Palaeorecharge conditions of the deep aquifers of the Northern Aquitaine region (France).
Journal of Hydrology,
Vol. 368,
Issue. 1-4,
p.
1.
Cartwright, Ian
2010.
Using groundwater geochemistry and environmental isotopes to assess the correction of 14C ages in a silicate-dominated aquifer system.
Journal of Hydrology,
Vol. 382,
Issue. 1-4,
p.
174.
Han, Liang-Feng
Plummer, L. Niel
and
Aggarwal, Pradeep
2012.
A graphical method to evaluate predominant geochemical processes occurring in groundwater systems for radiocarbon dating.
Chemical Geology,
Vol. 318-319,
Issue. ,
p.
88.
Machida, Isao
Suzuki, Yohey
and
Takeuchi, Mio
2013.
Carbon-14 age and chemical evolution of Ca(HCO3)2-type groundwater of age less than 8,000 years in a confined sandy and muddy Pleistocene aquifer, Japan.
Hydrogeology Journal,
Vol. 21,
Issue. 6,
p.
1289.
Cendón, D. I.
Hankin, S. I.
Williams, J. P.
Van der Ley, M.
Peterson, M.
Hughes, C. E.
Meredith, K.
Graham, I. T.
Hollins, S. E.
Levchenko, V.
and
Chisari, R.
2014.
Groundwater residence time in a dissected and weathered sandstone plateau: Kulnura–Mangrove Mountain aquifer, NSW, Australia.
Australian Journal of Earth Sciences,
Vol. 61,
Issue. 3,
p.
475.
Carreira, P. M.
Marques, J. M.
Carvalho, M. R.
Nunes, D.
and
da Silva, M. Antunes
2014.
Carbon isotopes and geochemical processes in CO2-rich cold mineral water, N-Portugal.
Environmental Earth Sciences,
Vol. 71,
Issue. 6,
p.
2941.
Han, L.F.
and
Plummer, L.N.
2016.
A review of single-sample-based models and other approaches for radiocarbon dating of dissolved inorganic carbon in groundwater.
Earth-Science Reviews,
Vol. 152,
Issue. ,
p.
119.
Vallejos, A.
Sola, F.
Yechieli, Y.
and
Pulido-Bosch, A.
2018.
Influence of the paleogeographic evolution on the groundwater salinity in a coastal aquifer. Cabo de Gata aquifer, SE Spain.
Journal of Hydrology,
Vol. 557,
Issue. ,
p.
55.
Junqueira, Tassiane Pereira
Guimarães Campos, José Eloi
Martins-Ferreira, Marco Antonio Caçador
Garnier, Jeremie
and
Freitas-Silva, Flavio Henrique
2022.
Hydrochemical and age constraints of the Chapada dos Veadeiros geothermal reservoir, central Brazil.
Groundwater for Sustainable Development,
Vol. 17,
Issue. ,
p.
100724.
Casillas-Trasvina, Alberto
Rogiers, Bart
Beerten, Koen
Pärn, Joonas
Wouters, Laurent
and
Walraevens, Kristine
2022.
Using helium-4, tritium, carbon-14 and other hydrogeochemical evidence to evaluate the groundwater age distribution: The case of the Neogene aquifer, Belgium.
Journal of Hydrology X,
Vol. 17,
Issue. ,
p.
100132.
Kamdee, Kiattipong
Nantasin, Prayath
Saengkorakot, Chakrit
Chanruang, Patchareeya
Polee, Chalermpong
Uapoonphol, Nichtima
Fungklin, Ratchai
Sriwiang, Wiranee
Wisitthammasri, Wanlapa
and
Chotpantarat, Srilert
2024.
Hydrochemistry of Groundwater in Quaternary Aquifers of the Phrae Basin, Northern Thailand.
ACS ES&T Water,
Vol. 4,
Issue. 12,
p.
5339.
Pavić, Mirja
Briški, Maja
Pola, Marco
and
Borović, Staša
2024.
Hydrogeochemical and environmental isotope study of Topusko thermal waters, Croatia.
Environmental Geochemistry and Health,
Vol. 46,
Issue. 4,