Light exposure along particle flowpaths in large rivers

Limnology and Oceanography
By: , and 

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Abstract

Sunlight is a critical resource in aquatic systems driving photosynthesis, photodegradation of organic matter and contaminants, animal behavior, and the activity of human pathogens. In rivers, solutes, materials, and organisms are turbulently mixed across the water column during downstream transport and exposed to highly variable sunlight. However, there are no measurements of suspended particles' sunlight exposure during downstream transport to characterize this variability, and it is unclear if current measurement approaches and optical theory capture the light exposure of suspended particles. We deployed neutrally buoyant drifters and stationary buoys in the Upper Mississippi (WI, U.S.A.) and Neuse Rivers (NC, U.S.A.) to measure underwater sunlight from the perspective of suspended particles. In our study sites, underwater sunlight varied more along flowpaths measured by drifters than over time measured by fixed‐site buoys; sunlight exposure along flowpaths was dominated by bursts of light (sunflecks) that accounted for 62–99% of the cumulative sunlight exposure; and modeled sunlight exposure using optical theory was consistently 56–1700% higher than measured sunlight exposure along flowpaths. Our results suggested that suspended particles in the study reaches experienced darker conditions than predicted and have important implications for how to quantify underwater sunlight in rivers.

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Publication type Article
Publication Subtype Journal Article
Title Light exposure along particle flowpaths in large rivers
Series title Limnology and Oceanography
DOI 10.1002/lno.11256
Volume 65
Issue 1
Year Published 2020
Language English
Publisher Association for the Sciences of Limnology and Oceanography
Contributing office(s) Upper Midwest Environmental Sciences Center
Description 15 p.
First page 128
Last page 142
Country United States
State North Carolina, Wisconsin
Other Geospatial Neuse River, Upper Missisiisppi River Pool 8
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