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Measuring Phosphorus Release in Laboratory Microcosms for Water Quality Assessment
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Sediment Phosphorus Equilibrium Concentration (EPC0) Measured Using a Novel Dynamic Mesocosm System
Tilak Patel1, Chris Weisener1, Ken G Drouillard2
1Great Lakes Institute for Environmental Research, University of Windsor, Windsor, ON, N9B 3P4, Canada.
Bulletin of Environmental Contamination and Toxicology
|July 11, 2025
Summary
A new dynamic mesocosm system allows for accurate measurement of sediment equilibrium phosphorus concentration (EPC₀) on intact cores. This method preserves natural sediment structure, offering a more reliable alternative to traditional batch techniques for assessing phosphorus flux.
Area of Science:
- Environmental Science
- Aquatic Chemistry
- Geochemistry
Background:
- Sediment equilibrium phosphorus concentration (EPC₀) is crucial for estimating phosphorus flux.
- Traditional batch methods for EPC₀ measurement can disrupt in-situ sediment structure.
- Preserving natural sediment structure is vital for accurate flux estimations.
Purpose of the Study:
- To introduce and validate a dynamic mesocosm system for determining EPC₀.
- To compare EPC₀ measurements from the mesocosm system with traditional batch methods.
- To assess the impact of sediment structure preservation on EPC₀ determination.
Main Methods:
- Development of a dynamic mesocosm system with recirculating overlying water from sediment cores.
- Experimental manipulation of the external reservoir to determine steady-state conditions.
- Comparison of EPC₀ measurements between intact cores in the mesocosm and homogenized samples using batch methods.
Main Results:
- The dynamic mesocosm system allows EPC₀ determination on intact sediment cores.
- EPC₀ values measured using the mesocosm system were higher than those from batch methods.
- Disrupting sediment structure through homogenization reduced the differences between the two methods.
Conclusions:
- The dynamic mesocosm system provides a more accurate method for measuring EPC₀ by preserving sediment structure.
- This technique offers a valuable advancement for studying phosphorus dynamics at the sediment-water interface.
- Understanding the influence of sediment structure is critical for reliable phosphorus flux assessments.

