4.4 Article

Quantifying ecosystem metabolism in the middle reaches of Murrumbidgee River during irrigation flow releases

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MARINE AND FRESHWATER RESEARCH
卷 56, 期 2, 页码 227-241

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C S I R O PUBLISHING
DOI: 10.1071/MF04187

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carbon cycling; heterotrophic; phytoplankton production; respiration; river metabolism

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The relative importance of floodplain carbon inputs and in-stream metabolic processes have not been well quantified in major Australian rivers. We quantified seasonal phytoplankton primary production and net ecosystem production during irrigation flow regimes at four sites each located similar to 100 km apart in the middle Murrumbidgee River. During flow periods dominated by storage release, ecosystem gross primary productivity, system respiration and phytoplankton chlorophyll concentrations all increased downstream so that overall net ecosystem metabolism was strongly net heterotrophic upstream and closer to balanced downstream. Phytoplankton production dominated ecosystem production throughout the entire reach and was likely to have been phosphorus limited throughout the study. Additionally, phytoplankton biomass was limited by short residence times at the upstream sites and nitrogen limited downstream in summer, despite an increase in turbidity. Both production and respiration rates were generally lower in winter, as expected, owing to lower temperatures.

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