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Competition for spectral irradiance between epilimnetic optically active dissolved and suspended matter and phytoplankton in the metalimnion. Consequences for limnology and chemistry. | LitMetric

AI Article Synopsis

  • The stratification of deep lakes results in distinct layers of water, affecting their chemical, physical, biological, and optical properties.
  • Chromophoric dissolved organic matter (CDOM) and total suspended solids (TSS) are key factors that reduce the amount of ultraviolet and photosynthetically active light reaching deeper waters.
  • The study found that variations in light in the metalimnion are influenced by CDOM levels, which in turn relate to chlorophyll a concentrations and overall phytoplankton productivity, ultimately impacting nutrient levels and oxygen in those deeper layers.

Article Abstract

In deep lakes, water column stratification isolates the surface water from the deeper bottom layers, creating a three dimensional differentiation of the chemical, physical, biological and optical characteristics of the waters. Chromophoric dissolved organic matter (CDOM) and total suspended solids (TSS) play an important role in the attenuation of ultraviolet and photosynthetically active radiation. In the present analysis of spectral irradiance, we show that the wavelength composition of the metalimnetic visible irradiance was influenced by epilimnetic spatial distribution of CDOM. We found a low occurrence of blue-green photons in the metalimnion where epilimnetic concentrations of CDOM are high. In this field study, the spatial variation of the spectral irradiance in the metalimnion correlates with the observed metalimnetic concentrations of chlorophyll a as well as chlorophyll a : chlorophyll b/c ratios. Dissolved oxygen, pH, and nutrients trends suggest that chlorophyll a concentrations were representative of the phytoplankton biomass and primary production. Thus, metalimnetic changes of spectral irradiance may have a direct impact on primary production and an indirect effect on the spatial trends of pH, dissolved oxygen, and inorganic nutrients in the metalimnion.

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Source
http://dx.doi.org/10.1039/c0pp00291gDOI Listing

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