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JKSWE
The Journal of
the Korean Society on Water Environment
About JKSWE
Aims and Scope
Editorial Board
Best Practices
Latest articles
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For Authors &
Reviewers
Instruction for Authors
Instruction for Reviewers
Guidelines for Publication
Ethics
Contact us
The Journal of
the Korean Society on Water Environment
The Journal of
the Korean Society on Water Environment
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ISSN : 2289-0971 (Print)
ISSN : 2289-098X (Online)
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2019-11
(Vol. 35, No. 6)
10.15681/KSWE.2019.35.6.589
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REF
1
American Public Health Association (APHA), 2005, Standard method for the examination of water and wastewater, American Public Health Association
2
Bennett A., Bogorad L., 1973, Complementary chromatic adaptation in a filamentous blue-green alga, Journal of Cell Biology, Vol. 58, No. 2, pp. 419-435
3
Bricaud A., Morel A., Prieur L., 1981, Absorption by dissolved organic matter of the sea (yellow substance) in the U.V. and visible domains, Limnology and Oceanography, Vol. 26, pp. 43-53
4
Buiteveld H., Hakvoort J.H.M., Donze M., 1994, The optical properties of pure water, Ocean Optics XII, International Society for Optics and Photonics, pp. 174-183
5
Bukata R.P., 2013, Retrospection and introspection on remote sensing of inland water quality: “Like Déjà Vu all over again”, Journal of Great Lakes Research, Vol. 39, pp. 2-5
6
Doxaran D., Froidefond J.M., Lavender S., Castaing P., 2002, Spectral signature of highly turbid waters- Application with SPOT data to quantify suspended particulate matter concentrations, Remote Sensing of Environment, Vol. 81, pp. 149-161
7
Garaba S. P., Zielinski O., 2013, Methods in reducing surface reflected glint for shipborne above-water remote sensing, Journal of the European Optical Society, Vol. 8, No. 13058, pp. 1-8
8
Gons H.J., Rijkeboer M., Ruddick K.G., 2005, Effect of a waveband shift on chlorophyll retrieval from MERIS imagery of inland and coastal waters, Journal of Plankton Research, Vol. 27, No. 1, pp. 125-127
9
Gordon H.R., Brown O.B., Evans R.H., Brown J.W., Smith R.C., Baker K.S., Clark D.K., 1988, A semianalytic radiance model of ocean color, Journal of Geophysical Research, Vol. 93, No. D9, pp. 10909-10924
10
Korea Institute of Ocean Science and Technology (KIOST), 1999, [Korean Literature], Development of red-tide and water turbidity algorithms using ocean color satellite, Korea Institute of Ocean Science and Technology
11
Kutser T., Vahtmäe E., Paavel B., Kauer T., 2013, Removing glint effects from field radiometry data measured in optically complex coastal and inland waters, Remote Sensing of Environment, Vol. 133, pp. 85-89
12
Lee Z.P., Carder K.L., 2004, Absorption spectrum of phytoplankton pigments derived from hyperspectral remote-sensing reflectance, Remote Sensing of Environment, Vol. 89, pp. 361-368
13
Morel A., 1974, Optical properties of pure water and pure sea water, optical aspects of oceanography, Academic Press, pp. 1-24
14
National Institute of Environmental Research (NIER), 2014, [Korean Literature], A study on romote monitoring of algal distribution using hyperspectral imagery in lake Uiam, 11-1480523-002078-01, NIER-RP2014-200, National Institute of Environmental Research
15
National Institute of Environmental Research (NIER), 2015, [Korean Literature], Hyperspectral remote sensing of algal distribution using inherent optical properties, 11-1480523-002555-01, NIER-RP2015-271, National Institute of Environmental Research
16
National Institute of Environmental Research (NIER), 2016, [Korean Literature], Hyperspectral remote sensing of algal distribution using inherent optical properties (II), 11-1480523-002960-01, NIER-RP2016-319, National Institute of Environmental Research
17
National Institute of Environmental Research (NIER), 2017, [Korean Literature], Hyperspectral remote sensing of algal distribution using inherent optical properties (’17), 11-1480523-003279-01, NIER-RP2017-204, National Institute of Environmental Research
18
Palmer S.C., Kutser T., Hunter P.D., 2015, Remote sensing of inland waters: Challenges, progress and future directions, Remote Sensing of Environment, Vol. 157, pp. 1-8
19
Salama M.S., Dekker A., Su Z., Mannaerts C.M., Verhoef W., 2009, Deriving inherent optical properties and associated inversion-uncertainties in the Dutch lakes, Hydrology and Earth System Sciences, Vol. 13, pp. 1113-1121
20
Tassan S., Ferrari G.M., 1995, An alternative approach to absorption measurements of aquatic particles retained on filters, Limnology and Oceanography, Vol. 40, No. 8, pp. 1358-1368
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