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Published on: January 26, 2018
Managed floodplain inundation maintains ecological function in lowland rivers.
Gavin N Rees1, Robert A Cook2, Nathan S P Ning3
1CSIRO Land and Water, La Trobe University, Wodonga, Victoria 3689, Australia.
Managed environmental flows boost river carbon and nutrients by inundating forests. This restores ecological function, with floodplain carbon persisting in river food webs for months.
Area of Science:
- Riverine ecology
- Environmental science
- Hydrology
Background:
- Anthropogenic activities disrupt riverine ecosystems, affecting carbon dynamics, diversity, and ecological function.
- Managed environmental flows are proposed as a tool to restore these functions.
- Empirical data quantifying these interactions are scarce.
Purpose of the Study:
- To quantify the impact of a managed environmental flow event on carbon, nutrient, and invertebrate dynamics in a river-floodplain system.
- To assess the persistence of floodplain-derived carbon in riverine food webs.
- To evaluate the role of floodplain forests in riverine ecosystem restoration.
Main Methods:
- Measurement of dissolved organic carbon (DOC), seston carbon, total nitrogen (TN), chlorophyll-a (chl-a), and total phosphorus during a managed flow event.
- Stable isotope analysis to trace carbon incorporation into riverine food webs.
- Comparison of outcomes between a major and a subsequent smaller flow event.
Main Results:
- Significant increases in DOC, seston carbon, TN, and chl-a downstream of the inundated floodplain forest.
- Peak yields from the floodplain: DOC (~100 t d⁻¹), seston carbon (~50 t d⁻¹), TN (~5 t d⁻¹), chl-a (~0.1 t d⁻¹), and total phosphorus (~0.4 t d⁻¹).
- Allochthonous carbon was rapidly assimilated by riverine food webs, persisting for up to four months.
- The floodplain acted as a carbon and nutrient sink during a subsequent smaller flow event.
Conclusions:
- Managed environmental flows inundating floodplain forests can significantly enhance riverine carbon and nutrient loads.
- Floodplain-derived carbon is readily incorporated into riverine food webs, supporting ecological function.
- The findings support the River Wave Concept, highlighting the importance of forest-floodplain connectivity for river health.
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