4.7 Article

Calculation of UV attenuation and colored dissolved organic matter absorption spectra from measurements of ocean color

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AMER GEOPHYSICAL UNION
DOI: 10.1029/2000JC000514

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remote sensing; SeaWiFS; colored dissolved organic matter; diffuse attenuation of downwelling radiation; K-d; ultraviolet radiation

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[1] The absorption of ultraviolet and visible radiation by colored or chromophoric dissolved organic matter (CDOM) drives much of marine photochemistry. It also affects the penetration of ultraviolet radiation (UV) into the water column and can confound remote estimates of chlorophyll concentration. Measurements of ocean color from satellites can be used to predict UV attenuation and CDOM absorption spectra from relationships between visible reflectance, UV attenuation, and absorption by CDOM. Samples were taken from the Bering Sea and from the Mid-Atlantic Bight, and water types ranged from turbid, inshore waters to the Gulf Stream. We determined the following relationships between in situ visible radiance reflectance, L-u/E-d (lambda) (sr(-1)), and diffuse attenuation of UV, K-d(lambda) (m(-1)): K-d(323nm) = 0.781[L-u/E-d(412)/L-u/E-d(555)](-1.07); K-d(338nm) = 0.604[L-u/E-d(412)/L-u/E-d(555)](-1.12); K-d(380 nm) = 0.302[L-u/E-d(412)/L-u/E-d(555)](-1.24). Consistent with published observations, these empirical relationships predict that the spectral slope coefficient of CDOM absorption increases as diffuse attenuation of UV decreases. Excluding samples from turbid bays, the ratio of the CDOM absorption coefficient to K-d is 0.90 at 323 nm, 0.86 at 338 nm, and 0.97 at 380 nm. We applied these relationships to SeaWiFS images of normalized water-leaving radiance to calculate the CDOM absorption and UV attenuation in the Mid-Atlantic Bight in May, July, and August 1998. The images showed a decrease in UV attenuation from May to August of approximately 50%. We also produced images of the areal distribution of the spectral slope coefficient of CDOM absorption in the Georgia Bight. The spectral slope coefficient increased offshore and changed with season.

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