Trusler Megan M, Kent Matthew S, Lomax Barry H, Vane Christopher H, Cook Sarah
School of Biosciences, University of Nottingham Sutton Bonnington Campus, Loughborough, United Kingdom.
British Geological Survey, Organic Geochemistry Facility, Keyworth, Nottingham, United Kingdom.
PLoS One. 2025 Aug 20;20(8):e0330354. doi: 10.1371/journal.pone.0330354. eCollection 2025.
A set of unused virgin polystyrene coffee cup lids were distributed in the environment (Sutton Bonington, UK) for a period of 24 months to compare monthly degradation rates across four treatments with variable degrees of exposure to natural UV irradiance (full or reduced exposure) and soil (surface or buried). Analysis of monthly samples (hole-punched discs) from three lids of each treatment via FTIR-ATR indicated that the lids in each treatment displayed varying levels of degradation, ranked as follows: exposure on the ground surface, no shading > exposure on the ground surface, shading> both buried treatments. Principal component analyses (PCAs) and the carbonyl index indicated that photooxidation via sunlight exposure was the primary degradation mechanism for polystyrene under these environmentally relevant conditions. Monthly variations in spectra for each treatment (particularly surface treatments) also indicated that degradation rate was not a continuous process, with a multiple regression establishing correlation between monthly carbonyl index for the first 12 months of the experiment, and both UV irradiance and temperature (p = 0.058). This demonstrated that environmental polystyrene degradation rate was closely related to seasonal cycles in the temperate environment.
将一组未使用过的原生聚苯乙烯咖啡杯盖放置在环境中(英国萨顿·博宁顿)24个月,以比较四种处理方式下每月的降解率,这四种处理方式对自然紫外线辐射(全暴露或减少暴露)和土壤(地表或掩埋)的暴露程度各不相同。通过傅里叶变换红外光谱-衰减全反射(FTIR-ATR)对每种处理方式的三个杯盖的月度样本(打孔圆盘)进行分析,结果表明每种处理方式下的杯盖降解程度各不相同,排序如下:地表暴露,无遮蔽>地表暴露,有遮蔽>两种掩埋处理方式。主成分分析(PCA)和羰基指数表明,在这些与环境相关的条件下,通过阳光照射进行的光氧化是聚苯乙烯的主要降解机制。每种处理方式(特别是地表处理方式)光谱的月度变化还表明,降解率并非是一个连续的过程,通过多元回归分析确定了实验前12个月的月度羰基指数与紫外线辐射和温度之间的相关性(p = 0.058)。这表明在温带环境中,环境中聚苯乙烯的降解率与季节循环密切相关。