Journal Article
Nutrient dynamics and GHG emissions in Azolla and Typha based cultivation on inundated former agricultural soils
Renske J. E. Vroom; Alfons J. P. Smolders; Leon P. M. Lamers; Bas P. van de Riet; Sarian Kosten
Plant and Soil · Vol. 518, Issue 1 · pp. 819-838 · 2026
Abstract
Background and aims Restoration and novel creation of wetlands is crucial as they store and purify water, sequester carbon, and are biodiversity hotspots. However, wetland rehabilitation on agriculturally-used soils typically causes water quality issues, low biodiversity and high methane emissions. To tackle these challenges in a novel, cost-effective way, Azolla filiculoides , a water-fern capable of nitrogen fixation and phosphorus (P) accumulation, could be cultivated after inundation to simultaneously extract nutrients and provide a commercial product. Methods We cultivated A. filiculoides and a polyculture of A. filiculoides and Typha angustifolia , an emergent macrophyte, on two P-rich former agricultural mineral soils in an outdoor mesocosm experiment during two years. We measured nutrient dynamics in soil, water, and biomass, diffusive and ebullitive methane (CH 4 ) emissions, and nitrous oxide emissions. Results Open water controls showed substantial P mobilisation to the surface water and were dominated by microalgae or emergent macrophytes. Azolla cultivation lowered surface water P concentrations, but did not negate them in the most P rich soil. Infestation with the Azolla weevil ( Stenopelmus rufinasus ) severely constrained Azolla growth. Thus, P extraction rates were moderate: up to 38 kg ha −1 yr −1 in the Azolla monoculture, and 67 kg ha −1 yr −1 in the polyculture with T. angustifolia . Methane emissions were substantial and ebullition-dominated in all treatments, and not affected by Azolla cultivation. Conclusion Azolla cultivation shows potential in the transition from agriculture to wet nature, while recovering P from former agricultural soils. Remaining challenges include pest control, product development, and technologies for large-scale implementation.