Abstract
AbstractPlastic is an essential component of agriculture globally, becoming a concerning form of pollution. Biodegradable alternatives are gaining attention as a potential replacement for commonly used, non-degradable plastics, but there is little known about the impacts of biodegradable plastics as they age and potential leachates are released. In this study, different types (conventional: polyethylene and polypropylene and biodegradable: polyhydroxybutyrate and polylactic acid) of micro- and meso-films were added to soil at 0.1% (w/w) prior to being planted with Lolium perenne (perennial ryegrass) to evaluate the plant and soil biophysical responses in a pot experiment. Root and shoot biomass and chlorophyll content were reduced when soil was exposed to plastics, whether conventional or biodegradable, pristine, aged or when just their leachate was present. The pH and organic matter content of soil exposed to these plastics and their leachates was significantly reduced compared to control samples; furthermore, there was an increase in CO2 respiration rate from soil. In general, meso (> 5 mm) and micro (< 5 mm) plastic films did not differ in the impact on plants or soil. This study provides evidence that conventional and biodegradable plastics have both physical and chemical impacts on essential soil characteristics and the growth of L. perenne, potentially leading to wider effects on soil carbon cycling.
Graphical abstract
Publisher
Springer Science and Business Media LLC
Reference99 articles.
1. Bahram M, Hildebrand F, Forslund SK, Anderson JL, Soudzilovskaia NA, Bodegom PM, Bengtsson-Palme J, Anslan S, Coelho LP, Harend H, Huerta-Cepas J (2018) Structure and function of the global topsoil microbiome. Nature 560(7717):233–237
2. Balestri E, Menicagli V, Ligorini V, Fulignati S, Galletti AMR, Lardicci C (2019) Phytotoxicity assessment of conventional and biodegradable plastic bags using seed germination test. Ecol Ind 102:569–580
3. Bandopadhyay S, Martin-Closas L, Pelacho AM, DeBruyn JM (2018) Biodegradable plastic mulch films: impacts on soil microbial communities and ecosystem functions. Front Microbiol 9:819
4. Bano K, Kuddus M, R Zaheer M, Zia Q, F Khan M, Gupta A, Aliev G (2017) Microbial enzymatic degradation of biodegradable plastics. Curr Pharm Biotechnol 18(5):429–440
5. Beach ES, Weeks BR, Stern R, Anastas PT (2013) Plastics additives and green chemistry. Pure Appl Chem 85(8):1611–1624
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