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◆ Environmental Pollution2025-10-07· Environmental science

Conventional and biodegradable agricultural microplastics: effects on soil properties and microbial functions across a European pedoclimatic gradient

Klára Šmídová, Helena Soinne, Shin Woong Kim, Jyri Tirronniemi, Raffaella Meffe, Paula E. Redondo‐Hasselerharm, Melanie Braun, Matthias C. Rillig, Hannu Fritze, Bartosz Adamczyk, Johanna Nikama, Janne Kaseva, Vili Saartama, Wulf Amelung, Rachel Hurley, Jakub Hofman, Luca Nizzetto, Salla Selonen, Sannakajsa Velmala

原始摘要(英文原文)· Original abstract
Agricultural plastics like mulching films may become a major source of microplastic (MP) soil contamination during their degradation and fragmentation. This study investigates the effects of agricultural MPs from conventional (linear low-density polyethylene, PE) and biodegradable (starch-blended polybutylene adipate co-terephthalate, PBAT-BD) mulching films on soil physicochemical properties, aggregation, microbial diversity and functions, litter decomposition, and greenhouse gases emissions (GHG). For this purpose, MPs were mixed into soils at realistic MP concentrations of 0.005% and 0.05% (w/w) in 2022 on experimental plots in three EU countries representing different pedoclimatic conditions (Finland, Germany and Spain), followed by monitoring of the above-mentioned variables in the subsequent growing seasons 2022 and 2023. We found several significant MP-induced effects for soil properties, aggregation, microbial diversity, litter decomposition, and GHG, but the effect endpoints were less pronounced or varied considerably. Contrarily, microbial activity, contributing to soil functions such as nitrogen cycling, was consistently reduced by both conventional and biodegradable MPs. The reductions were more pronounced after the second season and for the higher MP treatment. As the higher MP concentration (i.e., 0.05% w/w) is environmentally relevant in Europe, our findings emphasize the potential effects of environmentally relevant MP concentrations on soil health. Furthermore, the effects increased from north to south, probably modulated by varying pedoclimatic conditions, inducing reflection of a need for regionally tailored risk assessment to protect soil from plastic pollution. • Realistic concentrations of agricultural MPs induced effects in soil • Effects of MPs on soil properties and microbial community composition were variable • Microbial activity consistently decreased in plots contaminated by MPs • The effects were more evident at higher MP concentration (0.005 vs 0.05% w/w) • The effects were greater in the second year and differed between European regions
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Conventional and biodegradable agricultural microplastics: effects on soil properties and microbial functions across a European pedoclimatic gradient — 科研速览 Science Skim