Citation: | WEN Dong-guang, 2002. Groundwater Resources Attribute Based on Environmental Isotopes. Earth Science, 27(2): 141-147. |
[1] |
Appelo C A J, Postma D. Geochemistry, groundwater and pollution[M]. Rotterdam: Balkema A A, 1996.
|
[2] |
Cook P G, John K B. Determining timescale for groundwater flow and solute transport[A]. In: Cook P G, Andrew L H, eds. Environmental tracers in subsurface hydrology[C]. Massachusetts: KluwerAcademic Publishers, 2000. 529.
|
[3] |
IAEA. Proceedings of a regional executive management seminar on isotope techniques in water resources development and management and a regional workshop on isotope hydrology for Asia and the Pacific organized by the IAEA and held in Beijing[R]. Beijing, 15-26 June, 1987.
|
[4] |
Oliver S. Groundwater: past achievements and future challenges[M]. Rotterdam: Balkema A A, 2000.
|
[5] |
Eberts S M, George L L. Regional ground-water flow and geochemistry in the Midwestern basins and arches aquifer system in parts of Indiana, Ohio, Michigan, and Illinois [A]. US Geological Survey Professional Paper[C]. http://water.usgs.gov/pubs/pp/, 2000. 103.
|
[6] |
Mazor E. Applied chemical and isotopic groundwater hydrology[M]. Milton Keynes: Open University Press, 1991. 274.
|
[7] |
Wang D S, Wang K. Isotopes in precipitation in China (1986-1999)[A]. In: Water Resources Assessment: Isotope Techniques[C]. Technologies Sciences(Series E), 2001, 44(Supplement): 192.
|
[8] |
Klaus P S. Environmental isotopes in the hydrological cycle: principles and applications. Volume V: man' s impact on groundwater systems[M]. Vienna: IAEA, 2001.
|
[9] |
Blavoux B, Dray M, Fehri A, et al. Palaeoclimatic and hydrodynamic approach to the Aquitain basin deep aquifer (France) by means of environmental isotopes and noble gases[A]. In: IAEA, ed. Isotope techniques in the study of past and current environmental changes in the hydrosphere and the atmosphere[C]. Vienna: IAEA, 1993. 293-305.
|
[10] |
Saighi O, Michelot J L, Filly A. Isotopic characteristics of meteoric water and groundwater in Ahaggar Massif (central Sahara)[A]. In: IAEA, ed. Isotope techniques in water resources investigations in arid and semi-arid regions, IAEA-TECDOC-1207[C]. Vienna: IAEA, 2001. 7-26.
|
[11] |
Coplen T B, Herczeg A L, Barnes C. Isotope engineering — using stable isotopes of the water molecule to solve practical problems[A]. In: Cook P, Herczeg A L, eds. Environmental tracers in subsurface hydrology[C]. Massachusetts: Kluwer Academic Publishers, 2000.
|
[12] |
Katten Z. Chemical and environmental isotope study of the fissured basaltic aquifer systems of the Yarmouk basin (Syrian Arab Republic)[A]. In: IAEA, ed. Isotope techniques in water resources development and management[C]. Vienna: IAEA, 1999. 674.
|
[13] |
Mazor E. Chemical and isotopic groundwater hydrology [M]. New York: Marcel Dekker Inc, 1997. 413.
|
[14] |
Bentley H W, Phillips F M, Stanley N D, et al. Chlorine-36 dating of very old groundwater, the Great Artesian basin, Australia[J]. Water Resources Research, 1986, 22(13): 1991-2001. doi: 10.1029/WR022i013p01991
|
[15] |
Torgersen T, Habermehl M A, Phillips F M, et al. Chlorine-36 dating of very old groundwater 3. Further studies in the Great Artesian basin, Australia[J]. Water Resources Research, 1991, 27(12): 3201-3213. doi: 10.1029/91WR02078
|
[16] |
Radke B M, Ferguson J, Cresswell R G, et al. Hydrochemistry and implied hydrodynamics of the Cadna-owie-Hooray aquifer, Great Artesian basin, australia[M]. Canberra: Bureau of Rural Sciences, 2000. 229.
|
[17] |
Wang K, Zhu J L. A conceptual model of the Tianjin geothermal system based on isotopic studies[J]. Technologies Sciences(Series E), 2001, 44(Supplement): 160-164. doi: 10.1007/BF02916809
|
[18] |
Emanuel M. Interrelations between groundwater dating, palaeoclimate and palaeohydrology[A]. In: IAEA, ed. Isotope techniques in the study of past and current environmental changes in the hydrosphere and the atmosphere [C]. Vienna: IAEA, 1993. 621.
|