2023
CO2, CH4, and N2O emissions from dredged material exposed to drying and zeolite addition under field and laboratory conditions
CO2, CH4, and N2O emissions from dredged material exposed to drying and zeolite addition under field and laboratory conditions
Restoring organic matter, carbon and nutrient accumulation in degraded peatlands: 10 years Sphagnum paludiculture
Restoring organic matter, carbon and nutrient accumulation in degraded peatlands: 10 years Sphagnum paludiculture
Biogeochemistry (2023) doi.org/10.1007/s10533-023-01065-4
Water level and vegetation type control carbon fuxes in a newly‑constructed soft‑sediment wetland
Wetlands Ecol Manage (2023) doi.org/10.1007/s11273-023-09936-1
Wetscapes: Restoring and maintaining peatland landscapes for sustainable futures
Ambio (2023) doi.org/10.1007/s13280-023-01875-8
Factors influencing submerged macrophyte presence in fresh and brackish eutrophic waters and their impact on carbon emissions
Aquatic Botany (2023) Available online 17 March 2023, 103645
2022
Natte teelten en veeteelt bij een verhoogd (grond)waterpeil in de veenweiden: de effecten van vernattingsmaatregelen op biogeochemie & broeikasgasemissies - Eindrapportage Innovatieprogramma Veen
Rapportnummer RP-17.151.19.91 (2022) In opdracht van Vereniging Agrarisch Natuur- en Landschapsbeheer Water, Land & Dijken & Stichting Landschap Noord-Holland.
Sphagnum bleaching: Bicarbonate ‘toxicity’ and tolerance for seven Sphagnum species
Sphagnum bleaching: Bicarbonate ‘toxicity’ and tolerance for seven Sphagnum species
Plant Biology (2022) ISSN 1435-8603 (https://doi.org/10.1111/plb.13423)
2020
Changes in microbial community composition, activity, and greenhouse gas production upon inundation of drained iron-rich peat soils
Soil Biology and Biochemistry (2020) doi.org/10.1016/j.soilbio.2020.107862
Nutrient dynamics of Sphagnum farming on rewetted bog grassland in NW Germany
Nutrient dynamics of Sphagnum farming on rewetted bog grassland in NW Germany
Science of the Total Environment (2020) 726: 138470.
2019
Recognize the high potential of paludiculture on rewetted peat soils to mitigate climate change
Landbauforsch J Sustainable Organic Agric Syst 69(1): 5-8, DOI:10.3220/LBF1576769203000