0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Environmental Sources Marine & Wildlife Sign in to save

Impacts of Microplastics on the Soil Biophysical Environment

Environmental Science & Technology 2018 1726 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Matthias C. Rillig Anika Lehmann, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Anika Lehmann, Matthias C. Rillig Roland Becker, Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Roland Becker, Anderson Abel de Souza Machado, Anderson Abel de Souza Machado, Anderson Abel de Souza Machado, Anderson Abel de Souza Machado, Matthias C. Rillig Anderson Abel de Souza Machado, Anderson Abel de Souza Machado, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Chung Wai Lau, Chung Wai Lau, Chung Wai Lau, Chung Wai Lau, Werner Kloas, Werner Kloas, Werner Kloas, Anderson Abel de Souza Machado, Roland Becker, Roland Becker, Anika Lehmann, Anika Lehmann, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Anika Lehmann, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Anika Lehmann, Anika Lehmann, Matthias C. Rillig Anika Lehmann, Matthias C. Rillig Anika Lehmann, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Anderson Abel de Souza Machado, Anderson Abel de Souza Machado, Matthias C. Rillig Werner Kloas, Matthias C. Rillig Roland Becker, Roland Becker, Roland Becker, Jennifer Till, Anika Lehmann, Anika Lehmann, Matthias C. Rillig Jennifer Till, Anika Lehmann, Matthias C. Rillig Anika Lehmann, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Anika Lehmann, Roland Becker, Anderson Abel de Souza Machado, Werner Kloas, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Werner Kloas, Werner Kloas, Matthias C. Rillig Matthias C. Rillig Roland Becker, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Anika Lehmann, Anika Lehmann, Anika Lehmann, Matthias C. Rillig Anika Lehmann, Anika Lehmann, Anika Lehmann, Matthias C. Rillig Roland Becker, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Werner Kloas, Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig Matthias C. Rillig

Summary

Four common microplastic types (polyacrylic fibers, polyamide beads, polyester fibers, PE fragments) were added to loamy sand soil at environmentally relevant concentrations in a garden experiment and effects on soil-water relationships, structure, and microbial function were measured over 5 weeks. Results showed that microplastics altered water repellency, aggregate stability, and microbial activity in a plastic-type-dependent manner, confirming that microplastics can disrupt fundamental soil biophysical processes.

Polymers

Soils are essential components of terrestrial ecosystems that experience strong pollution pressure. Microplastic contamination of soils is being increasingly documented, with potential consequences for soil biodiversity and function. Notwithstanding, data on effects of such contaminants on fundamental properties potentially impacting soil biota are lacking. The present study explores the potential of microplastics to disturb vital relationships between soil and water, as well as its consequences for soil structure and microbial function. During a 5-weeks garden experiment we exposed a loamy sand soil to environmentally relevant nominal concentrations (up to 2%) of four common microplastic types (polyacrylic fibers, polyamide beads, polyester fibers, and polyethylene fragments). Then, we measured bulk density, water holding capacity, hydraulic conductivity, soil aggregation, and microbial activity. Microplastics affected the bulk density, water holding capacity, and the functional relationship between the microbial activity and water stable aggregates. The effects are underestimated if idiosyncrasies of particle type and concentrations are neglected, suggesting that purely qualitative environmental microplastic data might be of limited value for the assessment of effects in soil. If extended to other soils and plastic types, the processes unravelled here suggest that microplastics are relevant long-term anthropogenic stressors and drivers of global change in terrestrial ecosystems.

Sign in to start a discussion.

Share this paper