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Original Articles

Oxygen and hydrogen isotopic characterization of rainfall and throughfall in four South Korean cool temperate forests

ORCID Icon, , , &
Pages 2025-2034 | Received 31 Jul 2015, Accepted 17 May 2017, Published online: 10 Aug 2017

References

  • Allen, S.T., et al., 2014. The role of pre-event canopy storage in throughfall and stemflow by using isotopic tracers. Ecohydrology, 7, 858–868. doi:10.1002/eco.1408
  • Allen, S.T., et al., 2017. The role of stable isotopes in understanding rainfall interception processes: a review. Wiley Interdisciplinary Reviews: Water, 4 (1). doi:10.1002/wat2.1187
  • Araguás-Araguás, L., Froehlich, K., and Rozanski, K., 1998. Stable isotope composition of precipitation over Southeast Asia. Journal of Geophysical Research, 103, 28721–28742. doi:10.1029/98JD02582
  • Bayard, D., et al., 2005. The influence of seasonally frozen soil on the snowmelt runoff at two Alpine sites in southern Switzerland. Journal of Hydrology, 309, 66–84. doi:10.1016/j.jhydrol.2004.11.012
  • Brodersen, C., et al., 2000. Influence of vegetation structure on isotope content of throughfall and soil water. Hydrological Processes, 14, 1439–1448. doi:10.1002/1099-1085(20000615)14:8<1439::AID-HYP985>3.0.CO;2-3
  • Carlyle-Moses, D.E. and Gash, J.H., 2011. Rainfall interception loss by forest canopies. In: D.F. Levia, D.E. Carlyle-Moses, and T. Tanaka, eds. Forest hydrology and biogeochemistry. The Netherlands: Springer, 407–423.
  • Clark, I. and Fritz, P., 1997. Environmental isotopes in hydrology. New York: Lewis Publishers.
  • Craig, H., 1961. Isotopic variations in meteoric waters. Science, 133, 1702–1703. doi:10.1126/science.133.3465.1702
  • Crockford, R.H. and Richardson, D.P., 2000. Partitioning of rainfall into throughfall, stemflow and interception: effect of forest type, ground cover and climate. Hydrological Processes, 16–17, 2903–2920. doi:10.1002/1099-1085(200011/12)14:16/17<2903::AID-HYP126>3.0.CO;2-6
  • Cui, J., et al., 2009. Using deuterium excess to determine the sources of high-altitude precipitation: implications in hydrological relations between sub-alpine forests and alpine meadows. Journal of Hydrology, 373, 24–33. doi:10.1016/j.jhydrol.2009.04.005
  • Daansgard, W., 1964. Stable isotopes in precipitation. Tellus, 16, 436–468. doi:10.1111/j.2153-3490.1964.tb00181.x
  • Dawson, T.E. and Simonin, K.A., 2011. The role of stable isotopes in forest hydrology and biogeochemistry. In: D.F. Levia, D.E. Carlyle-Moses, and T. Tanaka, eds. Forest hydrology and biogeochemistry. The Netherlands: Springer, 137–162.
  • DeWalle, D.R. and Swistock, B.R., 1994. Differences in oxygen-18 content of throughfall and rainfall in hardwood and coniferous forests. Hydrological Processes, 8, 75–82. doi:10.1002/hyp.3360080106
  • Gat, J.R., 1996. Oxygen and hydrogen isotopes in the hydrologic cycle. Annual Review of Earth and Planetary Science, 24, 225–262. doi:10.1146/annurev.earth.24.1.225
  • Gat, J.R., 2010. Isotope hydrology: a study of the water cycle. Series on environmental science and management. London: Imperial college press, 70–80.
  • Gat, J.R. and Matsui, E., 1991. Atmospheric water balance in the Amazon Basin: an isotopic evapotranspiration model. Journal of Geophysical Research: Atmospheres, 96 (D7), 13179–13188. doi:10.1029/91JD00054
  • Hsueh, Y.-H., et al., 2016. Fine-scale spatial variability of throughfall amount and isotopic composition under a hardwood forest canopy. Hydrological Processes, 30, 1796–1803. doi:10.1002/hyp.10772
  • IAEA., 2012. WISER: Water isotope system for data analysis, visualization and electronic retrieval. Available from: http://www.univie.ac.at/cartography/project/wiser/ [ Accessed 4 July 2013].
  • Ikawa, R., et al., 2011. Temporal variations of isotopic compositions in gross rainfall, throughfall, and stemflow under a Japanese cedar forest during a typhoon event. Hydrological Research Letters, 5, 32–36. doi:10.3178/hrl.5.32
  • Kendall, C. and McDonnell, J.J., 1998. Isotope tracers in catchment hydrology. Amsterdam: Elsevier Science.
  • Koeniger, P., et al., 2008. Isotopic variation of snow cover and streamflow in response to changes in canopy structure in a snow-dominated mountain catchment. Hydrological Processes, 22, 557–566. doi:10.1002/hyp.6967
  • Kubota, T. and Tsuboyama, Y., 2003. Intra- and inter-storm oxygen-18 and deuterium variations of rain, throughfall, and stemflow, and two-component hydrograph separation in a small forested catchment in Japan. Journal of Forest Research, 8, 179–190. doi:10.1007/s10310-002-0024-9
  • Lee, K.S., et al., 2003. Climatic controls on the stable isotopic composition of precipitation in North-east Asia. Climate Research, 23, 137–148. doi:10.3354/cr023137
  • Lee, K.S. and Kim, Y., 2007. Determining the seasonality of groundwater recharge using water isotopes: a case study from the upper North Han River basin, Korea. Environmental Geology, 52, 853–859. doi:10.1007/s00254-006-0527-3
  • Lee, K.S., Wenner, D.B., and Lee, I., 1999. Using H-and O-isotopic data for estimating the relative contributions of rainy and dry season precipitation to groundwater: example from Cheju Island, Korea. Journal of Hydrology, 222, 65–74. doi:10.1016/S0022-1694(99)00099-2
  • Levia, D.F. 2011. Throughfall and stemflow in wooded ecosystems. In: D.F. Levia, et al. eds. Forest hydrology and biogeochemistry. The Netherlands: Springer, 425–443.
  • Levia, D.F. and Germer, S., 2015. A review of stemflow generation dynamics and stemflow‐environment interactions in forests and shrublands. Reviews of Geophysics, 53, 673–714. doi:10.1002/2015RG000479
  • Liu, W.J., et al., 2007. Using stable isotopes to determine sources of fog drip in a tropical seasonal rain forest of Xishuangbanna, SW China. Agricultural and Forest Meteorology, 143, 80–91. doi:10.1016/j.agrformet.2006.11.009
  • Liu, W.J., et al., 2008. Isotope variations of throughfall, stemflow and soil water in a tropical rain forest and a rubber plantation in Xishuangbanna, SW China. Hydrology Research, 39, 437–449. doi:10.2166/nh.2008.110
  • McGuire, K. and McDonnell, J., 2007. Stable isotope tracers in watershed hydrology. In: R. Michener and K. Lajtha, eds. Stable isotopes in ecology and environmental science. Boston: Blackwell Scientific, 334–365.
  • Pypker, T.G., et al., 2005. The importance of canopy structure in controlling the interception loss of rainfall: examples from a young and an old-growth Douglas-fir forest. Agricultural and Forest Meteorology, 130, 113–129. doi:10.1016/j.agrformet.2005.03.003
  • Saxena, R.K., 1986. Estimation of canopy reservoir capacity and oxygen-18 fractionation in throughfall in a pine forest. Nordic Hydrology, 17, 251–260.
  • Sharp, Z., 2007. Principles of stable isotope geochemistry. New Jersey: Pearson education.
  • Sprenger, M., et al., 2016. Illuminating hydrological processes at the soil vegetation atmosphere interface with water stable isotopes. Reviews of Geophysics, 54, 674–704. doi:10.1002/2015RG000515
  • von Arx, G., Dobbertin, M., and Rebetez, M., 2012. Spatio-temporal effects of forest canopy on understory microclimate in a long-term experiment in Switzerland. Agricultural and Forest Meteorology, 166–167, 144–155. doi:10.1016/j.agrformet.2012.07.018
  • Xu, X., Guan, H., and Deng, Z., 2014. Isotopic composition of throughfall in pine plantation and native eucalyptus forest in South Australia. Journal of Hydrology, 514, 150–157. doi:10.1016/j.jhydrol.2014.03.068
  • Xu, X.N., Wang, Q., and Hirata, E., 2005. Precipitation partitioning and related nutrient fluxes in a subtropical forest in Okinawa, Japan. Annals of Forest Science, 62, 245–252. doi:10.1051/forest:2005016
  • Zhang, W., et al., 2010. Using stable isotopes to determine the water sources in alpine ecosystems on the east Qinghai-Tibet plateau, China. Hydrological Processes, 24, 3270–3280. doi:10.1002/hyp.7754

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