TY - JOUR
T1 - The multifunctionality of cuttings from semi-natural habitats as organic amendments in arable farming
AU - van der Sloot, Maartje
AU - Limpens, Juul
AU - De Deyn, Gerlinde B.
AU - Kleijn, David
PY - 2025/7/1
Y1 - 2025/7/1
N2 - Using cuttings from semi-natural habitats as organic amendment has the potential to enhance soil functioning of arable fields and improve biodiversity in eutrophicated road verges. Adoption of this management practice is currently constrained by lack of quantitative information on the involved benefits and risks. Processed (composted or fermented as Bokashi) and fresh road verge cuttings were experimentally applied during three years in a maize-winter wheat crop rotation on fifteen farm fields. Plots with organic amendments received half of the conventional fertilizer application compared to control plots with fertilizers at conventional application rates. Potential beneficial effects of organic amendments on soil organic matter (SOM) content, nutrient cycling, water retention and crop yield and possible risks related to nitrogen (N) leaching and the introduction of weeds, heavy metals and anthropogenic litter were investigated. Applying composted and fresh cuttings significantly increased SOM content in the upper soil layer, while composted cuttings enhanced SOM also in the entire cultivation layer (0–40 cm). Yields did not differ significantly from the control treatment despite the 50 % reduction in applied mineral fertilizer. Application of cuttings did not significantly increase N leaching, weed pressure or exceed heavy metal thresholds. However, significant contamination of the cuttings with anthropogenic litter was observed. This study shows that use of organic amendments from cuttings can significantly increase the SOM content and simultaneously reduce mineral fertilizer use. Provided litter contamination can be prevented or removed, the application of cuttings on arable fields produces important benefits to both farmers and society.
AB - Using cuttings from semi-natural habitats as organic amendment has the potential to enhance soil functioning of arable fields and improve biodiversity in eutrophicated road verges. Adoption of this management practice is currently constrained by lack of quantitative information on the involved benefits and risks. Processed (composted or fermented as Bokashi) and fresh road verge cuttings were experimentally applied during three years in a maize-winter wheat crop rotation on fifteen farm fields. Plots with organic amendments received half of the conventional fertilizer application compared to control plots with fertilizers at conventional application rates. Potential beneficial effects of organic amendments on soil organic matter (SOM) content, nutrient cycling, water retention and crop yield and possible risks related to nitrogen (N) leaching and the introduction of weeds, heavy metals and anthropogenic litter were investigated. Applying composted and fresh cuttings significantly increased SOM content in the upper soil layer, while composted cuttings enhanced SOM also in the entire cultivation layer (0–40 cm). Yields did not differ significantly from the control treatment despite the 50 % reduction in applied mineral fertilizer. Application of cuttings did not significantly increase N leaching, weed pressure or exceed heavy metal thresholds. However, significant contamination of the cuttings with anthropogenic litter was observed. This study shows that use of organic amendments from cuttings can significantly increase the SOM content and simultaneously reduce mineral fertilizer use. Provided litter contamination can be prevented or removed, the application of cuttings on arable fields produces important benefits to both farmers and society.
KW - Agricultural soil
KW - Bokashi
KW - Compost
KW - Crop yield
KW - Nitrogen leaching
KW - Soil organic matter content
U2 - 10.1016/j.agee.2025.109613
DO - 10.1016/j.agee.2025.109613
M3 - Article
AN - SCOPUS:86000785833
SN - 0167-8809
VL - 386
JO - Agriculture, Ecosystems and Environment
JF - Agriculture, Ecosystems and Environment
M1 - 109613
ER -