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Macro- and micro- plastics in soil-plant system: Effects of plastic mulch film residues on wheat (Triticum aestivum) growth

The Science of The Total Environment · 2018 · Vol. 645 · pp. 1048–1056
Yueling QiXiaomei YangAmalia Mejia PelaezEsperanza Huerta LwangaNicolas BériotHenny GertsenPaolina GarbevaViolette Geissen

Abstract

Plastic residues have become a serious environmental problem in the regions with intensive use of plastic mulching. Even though plastic mulch is widely used, the effects of macro- and micro- plastic residues on the soil-plant system and the agroecosystem are largely unknown. In this study, low density polyethylene and one type of starch-based biodegradable plastic mulch film were selected and used as examples of macro- and micro- sized plastic residues. A pot experiment was performed in a climate chamber to determine what effect mixing 1% concentration of residues of these plastics with sandy soil would have on wheat growth in the presence and absence of earthworms. The results showed that macro- and micro- plastic residues affected both above-ground and below-ground parts of the wheat plant during both vegetative and reproductive growth. The type of plastic mulch films used had a strong effect on wheat growth with the biodegradable plastic mulch showing stronger negative effects as compared to polyethylene. The presence of earthworms had an overall positive effect on the wheat growth and chiefly alleviated the impairments made by plastic residues.

Microplastics and Plastic Pollutionbiodegradable polymer synthesis and propertiesRecycling and Waste Management TechniquesMulchBiodegradable plasticPlastic filmPlastic mulchPolyethyleneAgronomyAgroecosystemEnvironmental scienceMaterials scienceBiology

MeSH terms

AgricultureAnimalsEnvironmental MonitoringPoaceaePlasticsSoilSoil PollutantsTriticum

Funding

  • Nederlands Instituut voor Ecologie
  • Koninklijke Nederlandse Akademie van Wetenschappen
  • China Scholarship Council
  • Horizon 2020 Framework Programme
  • Fundamental Research Funds for the Central Universities
  • State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau
Citations
1,142
FWCI
21.95
field-weighted impact
References
74
Percentile
100%
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Citations per year
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