Applied Ecology Research Group, School of Life Sciences, Anglia Ruskin University, Cambridge, CB1 1PT, UK.
Environ Sci Pollut Res Int. 2024 Feb;31(8):11766-11780. doi: 10.1007/s11356-024-31838-9. Epub 2024 Jan 15.
Plastic 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 CO 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.
塑料在全球农业中是必不可少的组成部分,已成为一种令人担忧的污染形式。可生物降解的替代品作为常用的不可降解塑料的替代品受到关注,但对于可生物降解塑料随着时间的推移而老化以及潜在浸出物的释放的影响知之甚少。在这项研究中,在种植 Lolium perenne(多年生黑麦草)之前,将不同类型(传统:聚乙烯和聚丙烯以及可生物降解:聚羟基丁酸酯和聚乳酸)的微膜和中膜以 0.1%(w/w)的比例添加到土壤中,以评估盆栽实验中植物和土壤的生物物理响应。当土壤暴露于塑料(无论是传统塑料还是可生物降解塑料)、原始塑料、老化塑料或仅暴露于其浸出物时,根和茎的生物量和叶绿素含量均减少。与对照样品相比,暴露于这些塑料及其浸出物的土壤的 pH 值和有机质含量显着降低;此外,土壤的 CO 呼吸速率也增加。一般来说,中膜(>5 毫米)和微膜(<5 毫米)对植物或土壤的影响没有差异。本研究提供的证据表明,传统塑料和可生物降解塑料对土壤的基本特性和 L. perenne 的生长都具有物理和化学影响,这可能会对土壤碳循环产生更广泛的影响。