Effect of dissolved NaCl, MgCl2, and Na2SO4 in seawater on the optical attenuation in the region from 430 to 630 nm

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Effect of dissolved NaCl, MgCl2, and Na2SO4 in seawater on the optical attenuation in the region from 430 to 630 nm

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dc.contributor.author Ravisankar, M
dc.contributor.author Reghunath, A T
dc.contributor.author Sathianandan, K
dc.contributor.author Nampoori, V P N
dc.date.accessioned 2011-12-07T09:49:19Z
dc.date.available 2011-12-07T09:49:19Z
dc.date.issued 1988-09-15
dc.identifier.other Applied Optics, Vol. 27, Issue 18, pp. 3887-3894 (1988)
dc.identifier.uri http://dyuthi.cusat.ac.in/purl/2623
dc.description.abstract The split-pulse laser method is used to reinvestigate the optical attenuation of distilled water in the region from 430 to 630 nm. The studies are then extended to ionic solutions of NaCl, MgCl2, and Na2SO4, these salts forming the major constituents of seawater. The effect of the concentration of these constituents on optical attenuation is investigated. Further, optical attenuation studies are carried out for the region from 430 to 630 nm for an aqueous solution prepared with all the major constituents in the same proportions as in natural seawater. These values are then compared with values obtained for natural seawater. The relative role of dissolved salts and suspended particles on optical attenuation in seawater is discussed. The lowest attenuation is observed at ~450 nm for all solutions and is found to coincide with that for distilled water. en_US
dc.description.sponsorship Cochin University of Science & Technology en_US
dc.language.iso en en_US
dc.publisher Optical Society of America en_US
dc.subject ATTENUATION COEFFICIENTS en_US
dc.subject MAGNESIUM CHLORIDES en_US
dc.subject OPTICAL PROPERTIES en_US
dc.subject SEA WATER en_US
dc.subject SODIUM CHLORIDES en_US
dc.subject SODIUM SULFATES en_US
dc.subject ABSORPTIVITY en_US
dc.subject IONIC CRYSTALS en_US
dc.title Effect of dissolved NaCl, MgCl2, and Na2SO4 in seawater on the optical attenuation in the region from 430 to 630 nm en_US
dc.type Working Paper en_US
dc.contributor.faculty Technology en_US
dc.identifier.url http://dx.doi.org/10.1364/AO.27.003887 en_US


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