1 |
Seasonal variations of dissolved inorganic carbon and δ13C of surface waters: application of a modified gas evolution technique  |
미소장 |
2 |
Use of ^1^3C to trace origin and cycling of inorganic carbon in the Rhone river system  |
미소장 |
3 |
Brick, C.M. and Moore, J.N., 1996, Diel variation of trace metals in the upper Clark Fork River, Montana. Environmental Science & Technology, 30, 1953–1960. |
미소장 |
4 |
δ13C tracing of dissolved inorganic carbon sources in Patagonian rivers (Argentina)  |
미소장 |
5 |
Influence of diel biogeochemical cycles on carbonate equilibrium in a karst river  |
미소장 |
6 |
Doctor, D.H., Kendall, C., Sebestyen, S.D., Shanley, J.B., Ohte N., and Boyer, E.W., 2008, Carbon isotope fractionation of dissolved inorganic carbon (DIC) due to outgassing of carbon dioxide from a headwater steam. Hydrological Processes, 22, 2410–2423. |
미소장 |
7 |
Falkowski, P.G. and Raven, J.A., 1997, Aquatic Photosynthesis. Blackwell Science, Malden, 375 p. |
미소장 |
8 |
Diel cycling and stable isotopes of dissolved oxygen, dissolved inorganic carbon, and nitrogenous species in a stream receiving treated municipal sewage  |
미소장 |
9 |
Gran, G., 1952, Determination of the equivalence point in the potentiometric titrations. Part II. Analyst, 77, 661–671. |
미소장 |
10 |
Evaluation of hydrological and biological influences on CO 2 fluxes from a karst stream  |
미소장 |
11 |
Jeju Special Self-Governing Province, 2009, Master plan for 8 streams management including Geumsung stream. Jeju Special Self-Governing Province, Jeju, 1151 p. |
미소장 |
12 |
Baseline geochemical characteristics of groundwater in the mountainous area of Jeju Island, South Korea: Implications for degree of mineralization and nitrate contamination  |
미소장 |
13 |
Using H- and O-isotopic data for estimating the relative contributions of rainy and dry season precipitation to groundwater: example from Cheju Island, Korea  |
미소장 |
14 |
Lee, Y.D., Hyun, S.G., and Song, H.K., 2003, Estimation of sources for nitrate in groundwater at Ongpo Stream watershed in Jeju Island. Journal of Korean Society on Water Quality, 19, 455–461. (in Korean with English abstract) |
미소장 |
15 |
Controls of riverine CO 2 over an annual cycle determined using direct, high temporal resolution p CO 2 measurements  |
미소장 |
16 |
Mook, W.G., 1970, Stable carbon and oxygen isotopes of natural waters in the Netherlands. Proceedings of a Symposium on Use of Isotopes in Hydrology, Vienna, Mar. 9–13, p. 163–190. |
미소장 |
17 |
Moon, D.C., Yang, S.K., Koh, G.W., and Park, W.B., 2005, Estimation of baseflow discharge through several streams in Jeju Island, Korea. Journal of Environmental Sciences, 14, 405–412. https://doi.org/10.5322/JES.2005.14.4.405 |
미소장 |
18 |
Silicate rock weathering and atmospheric/soil CO 2 uptake in the Amazon basin estimated from river water geochemistry: seasonal and spatial variations  |
미소장 |
19 |
Neal, C., 2002, Calcite saturation in eastern UK rivers. Science of the Total Environment, 282–283, 311–326. |
미소장 |
20 |
Parker, S.R., Gammons, C.H., Poulson, S.R., and DeGrandpre, M.D., 2007, Diel variations in stream chemistry and isotopic composition of dissolved inorganic carbon, upper Clark Fork River, Montana, USA. Applied Geochemistry, 22, 1329–1343. |
미소장 |
21 |
Diel behavior of stable isotopes of dissolved oxygen and dissolved inorganic carbon in rivers over a range of trophic conditions, and in a mesocosm experiment  |
미소장 |
22 |
Parkhurst, D.L. and Appelo, C.A.J., 2013, Description of input and examples for PHREEQC version 3 – a computer program for speciation, batch-reaction, one-dimensional transport, and inverse geochemical calculations. U.S. Geological Survey Techniques and Methods, book 6, chap. A43, U.S. Geological Survey, Denver, 497 p. https://pubs.usgs.gov/tm/06/a43/ |
미소장 |
23 |
Perrin, A.S., Probst, A., and Probst, J.L., 2008, Impact of nitrogenous fertilizers on carbonate dissolution in small agricultural catchments:implications for weathering CO2 uptake at regional and global scales. Geochimca et Cosmochimca Acta, 72, 3105–3123. |
미소장 |
24 |
Plummer, L.N. and Busenberg, E., 1982, The solubilities of calcite, aragonite and vaterite in CO2-H2O solutions between 0 °C and 90 °C, and an evaluation of the aqueous model for the system CaCO3-CO2-H2O. Geochimica et Cosmochimica Acta, 46, 1011–1040. |
미소장 |
25 |
Assessment of diel chemical and isotopic techniques to investigate biogeochemical cycles in the upper Klamath River, Oregon, USA  |
미소장 |
26 |
Diel variations of certain physico-chemical parameters of water in selected aquatic systems  |
미소장 |
27 |
An isotopic study of dissolved inorganic carbon in the catchment of the Waimakariri River and deep ground water of the North Canterbury Plains, New Zealand  |
미소장 |
28 |
Carbon fluxes, pCO2 and substrate weathering in a large northern river basin, Canada: carbon isotope perspectives  |
미소장 |
29 |
Relationship between 13C and 18O fractionation and changes in major element composition in a recent calcite-depositing spring — A model of chemical variations with inorganic CaCO 3 precipitation  |
미소장 |
30 |
Study of Petro-chemistry of Volconic Rocks in Jeju Island  |
미소장 |
31 |
Chemical dynamics of the “St. Lawrence” riverine system: δD H 2O , δ 18O H 2O , δ 13C DIC, δ 34S sulfate, and dissolved 87Sr/ 86Sr  |
미소장 |
32 |
Yeongsan River Basin Environmental Office, 2009, Water environment management plans for medium areas of Jeju. Report on 2008 Environment Foundation Research Work, National Institute of Environmental Research, Gwangju, 164 p. |
미소장 |
33 |
Carbon isotope fractionation during gas-water exchange and dissolution of CO2  |
미소장 |