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Original Articles

Ultra low-level tritium measurement using electrolytic enrichment and LSCFootnote

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Pages 96-117 | Received 10 Mar 2009, Published online: 08 Jun 2009

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Yuki TosakiNoritoshi MorikawaKohei KazahayaHitoshi TsukamotoYoko S. TogoTsutomu SatoHiroshi A. TakahashiMasaaki TakahashiAkihiko Inamura. (2017) Deep incursion of seawater into the Hiroshima Granites during the Holocene transgression: Evidence from <sup>36</sup>Cl age of saline groundwater in the Hiroshima area, Japan. GEOCHEMICAL JOURNAL 51:3, pages 263-275.
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B. Kumar, L.-F. Han, L.I. Wassenaar, P.M. Klaus, G.G. Kainz, D. Hillegonds, D. Brummer, M. Ahmad, D.L. Belachew, L. Araguás & P. Aggarwal. (2016) A compact tritium enrichment unit for large sample volumes with automated re-filling and higher enrichment factor. Applied Radiation and Isotopes 118, pages 80-86.
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L. I. Wassenaar, B. Kumar, C. Douence, D. L. Belachew & P. K. Aggarwal. (2016) Measurement of extremely 2 H-enriched water samples by laser spectrometry: application to batch electrolytic concentration of environmental tritium samples . Rapid Communications in Mass Spectrometry 30:3, pages 415-422.
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A. P. Atkinson, I. Cartwright, B. S. Gilfedder, D. I. Cendón, N. P. Unland & H. Hofmann. (2014) Using <sup>14</sup>C and <sup>3</sup>H to understand groundwater flow and recharge in an aquifer window. Hydrology and Earth System Sciences 18:12, pages 4951-4964.
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Yoko S Togo, Kohei Kazahaya, Yuki Tosaki, Noritoshi Morikawa, Hiroyuki Matsuzaki, Masaaki Takahashi & Tsutomu Sato. (2014) Groundwater, possibly originated from subducted sediments, in Joban and Hamadori areas, southern Tohoku, Japan. Earth, Planets and Space 66:1, pages 131.
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Ian Cartwright, L. Keith Fifield & Uwe Morgenstern. (2013) Using 3H and 14C to constrain the degree of closed-system dissolution of calcite in groundwater. Applied Geochemistry 32, pages 118-128.
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M. A. Gusyev, M. Toews, U. Morgenstern, M. Stewart, P. White, C. Daughney & J. Hadfield. (2013) Calibration of a transient transport model to tritium data in streams and simulation of groundwater ages in the western Lake Taupo catchment, New Zealand. Hydrology and Earth System Sciences 17:3, pages 1217-1227.
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Ian Cartwright & Uwe Morgenstern. (2012) Constraining groundwater recharge and the rate of geochemical processes using tritium and major ion geochemistry: Ovens catchment, southeast Australia. Journal of Hydrology 475, pages 137-149.
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Uwe Morgenstern & Christopher J. Daughney. (2012) Groundwater age for identification of baseline groundwater quality and impacts of land-use intensification – The National Groundwater Monitoring Programme of New Zealand. Journal of Hydrology 456-457, pages 79-93.
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R. H. Rhodes, N. A. N. Bertler, J. A. Baker, H. C. Steen-Larsen, S. B. Sneed, U. Morgenstern & S. J. Johnsen. (2012) Little Ice Age climate and oceanic conditions of the Ross Sea, Antarctica from a coastal ice core record. Climate of the Past 8:4, pages 1223-1238.
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M. K. Stewart, U. Morgenstern, J. J. McDonnell & L. Pfister. (2012) The ‘hidden streamflow’ challenge in catchment hydrology: a call to action for stream water transit time analysis. Hydrological Processes 26:13, pages 2061-2066.
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U. Morgenstern, M. K. Stewart & R. Stenger. (2010) Dating of streamwater using tritium in a post nuclear bomb pulse world: continuous variation of mean transit time with streamflow. Hydrology and Earth System Sciences 14:11, pages 2289-2301.
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M. K. Stewart & B. D. Fahey. (2010) Runoff generating processes in adjacent tussock grassland and pine plantation catchments as indicated by mean transit time estimation using tritium. Hydrology and Earth System Sciences 14:6, pages 1021-1032.
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Michael K. Stewart, Uwe Morgenstern & Jeffrey J. McDonnell. (2010) Truncation of stream residence time: how the use of stable isotopes has skewed our concept of streamwater age and origin. Hydrological Processes 24:12, pages 1646-1659.
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