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Effects of Microplastics in Soil Ecosystems: Above and Below Ground

Environmental Science & Technology · 2019 · Vol. 53(19) · pp. 11496–11506
Bas BootsConnor William RussellDannielle S. Green

Abstract

Environmental contamination by microplastics is now considered an emerging threat to biodiversity and ecosystem functioning. Soil ecosystems, particularly agricultural land, have been recognized as a major sink of microplastics, but the impacts of microplastics on soil ecosystems (e.g., above and below ground) remain largely unknown. In this study, different types of microplastics [biodegradable polylactic acid (PLA)], conventional high-density polyethylene (HDPE), and microplastic clothing fibers were added to soil containing the endogeic <i>Aporrectodea rosea</i> (rosy-tipped earthworm) and planted with <i>Lolium perenne</i> (perennial ryegrass) to assess the biophysical soil response in a mesocosm experiment. When exposed to fibers or PLA microplastics, fewer seeds germinated. There was also a reduction in shoot height with PLA. The biomass of <i>A. rosea</i> exposed to HDPE was significantly reduced compared to control samples. Furthermore, with HDPE present there was a decrease in soil pH. The size distribution of water-stable soil aggregates was altered when microplastics were present, suggesting potential alterations of soil stability. This study provides evidence that microplastics manufactured of HDPE and PLA, and synthetic fibers can affect the development of <i>L. perenne</i>, health of <i>A. rosea</i> and basic, but crucial soil properties, with potential further impacts on soil ecosystem functioning.

Microplastics and Plastic Pollutionbiodegradable polymer synthesis and propertiesMicroplasticsEnvironmental scienceEcosystemMesocosmEarthwormSoil waterHigh-density polyethyleneAgronomyEcologyBiology

MeSH terms

AnimalsOligochaetaPlasticsSoilEcosystemBiodiversity

Funding

  • Anglia Ruskin University
Citations
1,366
FWCI
27.19
field-weighted impact
References
84
Percentile
100%
vs. same field & year
Citations per year
References
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Environmental Toxicology and Chemistry · 2015 · 617 citations
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