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Suspended Particulate Matter Concentrations Retrieved from Self-Calibrated Multispectral Satellite Imagery


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BABAN S. M. J., 1995: The use of Landsat imagery to map fluvial sediment discharge into coastal waters. Marine Geol., 123, 263-270.10.1016/0025-3227(95)00003-HSearch in Google Scholar

BABIN M., MOREL A., FOURNIER-SICRE V., FELL F., STRAMSKI D., 2003: Light scattering properties of marine particles in coastal and open ocean waters as related to the particle mass concentration. Limnol. and Oceanography, 48, 2, 843-859.10.4319/lo.2003.48.2.0843Search in Google Scholar

BINDING C. E., BOWERS D. G., MITCHELSON-JACOB E. G., 2005: Estimating suspended sediment concentrations from ocean coour measurements in moderately turbid waters; the impact of variable particle scattering properties. Remote Sensing of Environment, 94, 373-383.10.1016/j.rse.2004.11.002Search in Google Scholar

BOWERS D. G., BINDING C. E., 2006: The optical properties of mineral suspended particles: A review and synthesis. Esturine Coastal and Shelf Science, 67, 219-230.10.1016/j.ecss.2005.11.010Search in Google Scholar

BOWERS D. G., BRAITHWAITE K. M., NIMMO-SMITH W. A. M., GRAHAM G. W., 2009: Light scattering by particles suspended in the sea: The role of particle size and density. Continental Shelf Research, 29, 1748-1755.10.1016/j.csr.2009.06.004Search in Google Scholar

BRICAURD A., MOREL A., PRIEUR L., 1981: Absorption by dissolved organic matter of the sea (yellow substance) in the UV and visible domains. Limnol. Oceanogr., 26, 1, 43-53.10.4319/lo.1981.26.1.0043Search in Google Scholar

BUKATA R., JEROME J. H., BORSTAD G. A., BROWN L. N., GOWER J. F. R., 2004: Mitigating the impact of transspectral processes on multivariate retrieval of water quality parameters from case 2 waters. Can. J. Remote Sensing, 30, 8-16.10.5589/m03-046Search in Google Scholar

BUKATA R. P., JEROME J. H., KONDRATYEV K. Y., KOTYKHOV A. A., 1997: Modelling the Radiometric Color of Inland Waters: Implications to a) Remote Sensing and B) Limnological Color Scales. J. Great Lakes Research., 23, 254-269.10.1016/S0380-1330(97)70910-9Search in Google Scholar

CHAKRAPANI G. J., 2005: Factors controlling variations in river sediment loads. Current Sci., 88, 569-575.Search in Google Scholar

CHRISTIAN, D., SHENG, Y., 2003: Relative influence of various water quality parameters on light attenuation in Indian River Lagoon. Estuarine, Coastal and Shelf Science, 57, 961-971.10.1016/S0272-7714(03)00002-7Search in Google Scholar

DECHO A. W., KAWAGUCHI T., ALLISON M., A., et al., 2003: Sediment properties influencing upwelling spectral reflectance signatures: The "biofilm gel effect". Limnol. Oceanogr., 48, 431-443.10.4319/lo.2003.48.1_part_2.0431Search in Google Scholar

DEKKER A. G., VOS R. J., PETERS S. W. M., 2001: Comparison of remote sensing data, model results and in situ data for total suspended sediment matter (TSM) in the southern Frisian lakes. Science of the Total Environment., 268, 197-214.10.1016/S0048-9697(00)00679-3Search in Google Scholar

DOXARAN D., FROINDENFOND J. M., LAVENDER S., CASTAING P., 2002a): Spectral signature of highly turbid waters: Application with SPOT data to quantify suspended particulate matter concentrations. Remote Sensing of Environment., 81, 149-161.10.1016/S0034-4257(01)00341-8Search in Google Scholar

DOXARAN D., FROINDENFOND J. M., CASTAING P. A., 2002b): A reflectance based ratio used to estimate suspended matter concentrations in sediment dominated coastal waters. Int. J. Remote Sens., 23, 5079-5085.10.1080/0143116021000009912Search in Google Scholar

DOXARAN D., CHERUKURU R. C., LAVENDER S. J., 2004: Estimation of surface reflection effects on upwelling radiance field measurements in turbid waters. J. Optics: A pure and Applied Optics., 6, 690-697.10.1088/1464-4258/6/7/006Search in Google Scholar

DOXARAN D., FROINDENFOND J. M., CASTAING P., BABIN M., 2009: Dynamics of the turbidity maximum zone in a macrotidal estuary (the Gironde, France): Observations from field and MODIS satellite data. Estuarine, Coastal and Shelf Science., 81, 321-332.10.1016/j.ecss.2008.11.013Search in Google Scholar

GALLEGOS C., 2001: Calculating optical water targets to restore and protect submersed aquatic vegetation: Overcomming problems in partitioning the diffuse attenuation coefficient for photosynthetically active radiation. Estuaries, 24, 3, 381-397.10.2307/1353240Search in Google Scholar

GIARDINO C., PEPE M., BRIVIO P., GHEZZI P., ZILIONI E., 2001: Detecting chlorophyll, Sechci disk depth and surface temperature in sub-alpine lake usinh Landsat imagery. Science of the Total Environment, 268, 19-29.10.1016/S0048-9697(00)00692-6Search in Google Scholar

GORDON H. R., BROWN O. B. and JACOBS M. M., 1975: Computed relations between the inherent and apparent optical properties of a flat homogeneous ocean. Appl. Opt., 14, 417-427.10.1364/AO.14.00041720134901Search in Google Scholar

GORDON H. R. and WANG M., 1994: Influence of oceanic whitecaps on atmospheric correction of ocean-color sensors. Appl. Opt., 33, 7754-7763.10.1364/AO.33.00775420962986Search in Google Scholar

HAN L., RUNDQUIST D. C., 1996: Spectral characterization of suspended sediment generated from two texture classes of clay soil. Int. J. Remote Sensing., 17, 643-649.10.1080/01431169608949034Search in Google Scholar

HOLUBOVÁ K., SZOLGAY J., LUKÁČ M., CAPEKOVÁ Z. et al., 1998: The regime of suspended load and bedload in the vecinity of the capital city (Bratislava) in response to the altered runoff regime. (In Slovak.) Final Report of the Project No. VTP 95/5145/622, Water Reasearch Institute, Bratislava, Slovakia.Search in Google Scholar

IOCCG, 2000: Remote Sensing of Ocean Colour in Coastal, and Other Optically-Complex Waters. Sathyendranath, S. (ed.), Reports of the International Ocean-Colour Coordinating, Group, No. 3, IOCCG, Dartmouth, Canada.Search in Google Scholar

JERLOV N G., 1968: Optical oceanography. Elsevier.Search in Google Scholar

KARBASSI A, MOATTAR B., 2006: Origin and chemical partitioning of heavy metals in riverbed sediments. Int. J. Environ. Sci. Technol., 3, 35-42.10.1007/BF03325905Search in Google Scholar

KELBLE C. R., ORTNER P. B., HITCHOCK G. L., BOYER J. N., 2005: Attenuation of photosynthetically available radiation (PAR) in Florida Bay: potential for light limitation of primary producers. Estuaries, 28, 560-571.10.1007/BF02696067Search in Google Scholar

KIRK J. T. O.: 1976: Yellow substance (Gelbstoff) and its contribution to the attenuation of photosynthetically active radiation in some inland and coastal south-eastern Australian waters. Aust. J. Mar. Freshwater Res., 27, 61-71.10.1071/MF9760061Search in Google Scholar

KLAVER G., van OS B., NEGREL P., PETELET-GIRAUD E., 2007: Influence of hydropower dams on the composition of the suspended and river bank sediments in the Danube. Environmental Pollution. 148, 718-728.10.1016/j.envpol.2007.01.037Search in Google Scholar

KLEMAS V., OTLEY M., PHILPOT W., WETHE C., ROGERS R., SHAH N., 1974: Correlation of coastal water turbidity and current circulation with ERTS-1 and Skylab imagery. Proc. 9th int. symp. remote sensing of environment. Res. Inst. Michigan, Ann Arbour, Michigan; pp. 1289-1317.Search in Google Scholar

KLOIBER S., BREZONIK P., OLMANSON L., BAUER M., 2002: A procedure for regional lake water quality assessment using Landsat multispectral data. Remote Sensing of Environment, 82, 38-47.10.1016/S0034-4257(02)00022-6Search in Google Scholar

LAHET F., OUILLON S., FORGET P., 2000: A three component model of ocean colour and its application in the Ebro River mouth area. Remote Sensing of Environment., 72, 181-190.10.1016/S0034-4257(99)00101-7Search in Google Scholar

LeCROY S. R., 1982: Determination of Turbidity Patterns in Lake Chikot from Landsat MMS imagery. NASA Contractor Report 165870, Langley Research Center, Hampton, VA, USA. 1982.Search in Google Scholar

LIU YANSUI, ISLAM M. D., GAO J., 2003: Quantification of shallow water quality parameters by means of remote sensing. Progress in Physical Geography, 27, 24-43.10.1191/0309133303pp357raSearch in Google Scholar

LUKÁČ M., 2002: Mass balance of the suspended load in the Danube River between Bratislava-Medvedov, Slovakia. (In Slovak.) In: the Proceedings of the conference "10 Years of the operation of the Gabčíkovo Water Project". October 25, 2002, Bratislava, Slovakia. 55-58.Search in Google Scholar

MÉLIN F., ZIBORDI G., DJAVIDNIA S., 2009: Merged series of normalized water leaving radiances obtained from satellite missions for the Mediterranean Sea. Advances in Space Res., 43, 423-437.10.1016/j.asr.2008.04.004Search in Google Scholar

MILLIMAN J. D., 1991: Flux and fate of fluvial sediments and water in coastal seas. In Ocean Margin Processes in Global Change (eds Mantoura R. F. C., Martin J., M., Wollast R.), John Wiley.Search in Google Scholar

MISHRA A. K., 2004: Retrieval of suspended sediment concentrations in the estuarine waters using IRS-1C WiFS data. Int. J. Appl. Earth Observat. and Geoinformat., 6, 83-95.10.1016/j.jag.2004.08.001Search in Google Scholar

MOBLEY C. D. and STRAMSKI D., 1997: Effects of microbial particles on oceanic optics: Methodology for radiative transfer modeling and example simulations. Limnol. Oceanogr., 42, 3, 550-560.10.4319/lo.1997.42.3.0550Search in Google Scholar

MOREL A. and GENTILI B., 1996: Diffuse reflectance of oceanic waters. II. Implication of bidirectionality for the remote-sensing problem. Appl. Opt. 35, 4850-4861.10.1364/AO.35.00485021102911Search in Google Scholar

MOREL A., PIEUR L., 1977: Analysis of variations in ocean colour. Limnol. Oceanogr., 22, 4, 709-722.10.4319/lo.1977.22.4.0709Search in Google Scholar

NASH S. G., SOFER A., 1996: Linear and Nonlinear Programming. McGraw-Hill New York, pp. 409-423.Search in Google Scholar

MOORE G. K., 1980: Satellite remote sensing of water turbidity. Hydrological Sciences-Bulletin-des Sciences Hydrologiques, 25, 4.10.1080/02626668009491942Search in Google Scholar

MOTULSKY H. J., CHRISTOPULOS A., 2003: Fitting models to biological data using linear and nonlinear regression. A practical guide to curve fitting. GraphPad Software Inc., San Diego CA, www.graphpad.com www.graphpad.comSearch in Google Scholar

NASA Landsat Handbook: http://landsathandbook.gsfc.nasa.gov/handbook.htmlSearch in Google Scholar

NELDER, J. A., MEAD, R., 1965: A simplex method for function minimization. Comput. J., 7, 308-313.10.1093/comjnl/7.4.308Search in Google Scholar

OUILLON S., DOUILLET P., PETRENKO A., NEVEUX J., DUPOUY C., FROIDEFOND J. M., ANDRÉFOUËT S., MUÑOZ-CARAVACA A., 2008: Optical Algorithms at Satellite Wavelengths for Total Suspended Matter in Tropical Coastal Waters. Sensors., 8, 4165-4185.10.3390/s8074165369716827879929Search in Google Scholar

PEKÁROVÁ P., ONDERKA M., PEKÁR P., MIKLÁNEK P., HALMOVÁ D., ŠKODA P., BAČOVÁ-MITKOVÁ V., 2008: Hydrologic scenarios of the Danube River at Bratislava. Slovak Committee for Hydrology, UNESCO, Key-Publishing, ISBN 978-80-87071-51-9, pp. 11.Search in Google Scholar

PETZOLD T. J., 1972: Volume scattering coefficients for selected oceanic waters. In: Tyler, Light in the Sea, Dowden, Hutchinson and Ross, pp 155-174.10.21236/AD0753474Search in Google Scholar

POPE R. M., FRY E. S., 1997: Absorption spectrum (380-700 nm) of pure water. II. Integrating cavity measurements. Appl. Opt. 36, 8710-8723.10.1364/AO.36.008710Search in Google Scholar

PREISENDORFER R. W., 1961: Application of radiative transfer theory to light measurements in the sea. Int. Union Geod. Geophys. Monogr., p. 11-30.Search in Google Scholar

RITCHIE J. C., SCHIEBE F. R., 1985: Monitoring Suspended Sediments with Remote Sensing Techniques. Hydrologic Applications of Space Technology, Proceedings of the Cocoa Beach Workshop, Florida, August 1985. IAHS Publ. No. 160, 223-243.Search in Google Scholar

RUDDICK K. G., CAUWER V. D., PARK YOUNG-JE, 2006: Seaborne measurements of near infrared water-leaving reflectance: The similarity spectrum for turbid waters. Limnol. Oceanogr., 51, 2, 1167-1179. 2006.10.4319/lo.2006.51.2.1167Search in Google Scholar

SANJAY K. J., PRATAP S., 2002: Assessment of sedimentation in Bhakra Reservoir in the western Himalayan region using remotely sensed data. Hydrological Sciences-des Sciences Hydrologiques, 47, 203-212.10.1080/02626660209492924Search in Google Scholar

SCHIEBE F. R., HARRINGTON Jr., RITCHIE J. C., 1992: Remote sensing of suspended sediments: the Lake Chicot, Arkansas project, Int. J. Remote Sensing, 13, 8, 1487-1509.10.1080/01431169208904204Search in Google Scholar

SCHALLES J. F., RUNDQUIST D. C., SCHIEBE F. R., 2001: The influence of suspended clays on phytoplankton reflectance signatures and the remote estimation of chlorophyll. Verh. Internat. Verein. Limnol., 27, 3619-3625.10.1080/03680770.1998.11902502Search in Google Scholar

SMITH R. C., BAKER K. S., 1981: Optical properties of the clearest natural waters. Appl. Opt., 20, 177-184.10.1364/AO.20.000177Search in Google Scholar

SYVITSKI J. P. M., MOREHEAD M., NICHOLSON M., 1998: A climate driven hydrologic transport model for predicting discharge and sediment to lakes and oceans. Comp. Geosci., 24, 51-68.10.1016/S0098-3004(97)00083-6Search in Google Scholar

TOLK B. L., HAN L., RUNDQUIST D. C., 2000: The impact of bottom brightness on spectral reflectance of suspended sediments. Int. J. Remote Sensing, 21, 2259-2268.10.1080/01431160050029558Search in Google Scholar

VIERS J., DUPRÉ B., GAILLARDET J., 2009: Chemical composition of suspended sediments in World Rivers: New insights from a new database. Science of the Total Environment, 407, 853-868.10.1016/j.scitotenv.2008.09.05319007968Search in Google Scholar

WARRICK J. A., MERTES L. A. K., SIEGEL D. A., MACKENZIE C., 2004: Estimating suspended sediment concentrations in turbid coastal waters of the Santa Barbara Channel with SeaWiFSINT. J. Remote Sensing. 25, 1995-2002.10.1080/01431160310001619535Search in Google Scholar

WALLING D. E., 2006: Human impact on land-ocean sediment transfer by the world's rivers. Geomorphology, 79, 192-216.10.1016/j.geomorph.2006.06.019Search in Google Scholar

WANG J., LU X., ZHOU Y., 2007: Retrieval of suspended sediment concentrations in the turbid water of the Upper Yangtze River using Landsat ETM+. Chinese Sci. Bull., Springer, 52, supp. II, 273-280.10.1007/s11434-007-7012-6Search in Google Scholar

WHITLOCK C. H., WITTE W. G., TALANY T. A., MORRIS W. D., USRY J. W. and POOLE L. R., 1981: Research for reliable quantification of water sediments concentration from multispectral sensor remote sensing data. USDA/NASA AgRISTARS Report CP-Z1-04078 (JSC-17134).Search in Google Scholar

ZORAN M., ANDERSON E., 2006: The use of multi-temporal and multispectral satellite data for change detection analysis of the Romanian Black Sea coastal zone. J. Optoelectronics and Advanced Materials, 8, 252-256.Search in Google Scholar

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