Ecotoxicity assessment of additives in commercial biodegradable plastic products: Implications for sustainability and environmental risk

生态毒性 持续性 风险评估 环境科学 塑料废料 废物管理 生物可分解塑胶 塑料包装 业务 工程类 材料科学 化学 计算机科学 生态学 复合材料 生物 计算机安全 有机化学 毒性
作者
Min Jang,Minkyung Lee,Seonghyn Chung,Seul‐A Park,H. Park,Hyeonyeol Jeon,Jonggeon Jegal,Sung Bae Park,Dongyeop X. Oh,Giyoung Shin,Hyo Jeong Kim
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:931: 172903-172903 被引量:4
标识
DOI:10.1016/j.scitotenv.2024.172903
摘要

Biodegradable plastics have gained popularity as environmentally friendly alternatives to conventional petroleum-based plastics, which face recycling and degradation challenges. Although the biodegradability of these plastics has been established, research on their ecotoxicity remains limited. Biodegradable plastics may still contain conventional additives, including toxic and non-degradable substances, to maintain their functionality during production and processing. Despite degrading the polymer matrix, these additives can persist in the environment and potentially harm ecosystems and humans. Therefore, this study aimed to assess the potential ecotoxicity of biodegradable plastics by analyzing the phthalate esters (PAEs) leaching out from biodegradable plastics through soil leachate. Sixteen commercial biodegradable plastic products were qualitatively and quantitatively analyzed using gas chromatography–mass spectrometry to determine the types and amounts of PAE used in the products and evaluate their ecotoxicity. Among the various PAEs analyzed, non-regulated dioctyl isophthalate (DOIP) was the most frequently detected (ranging from 40 to 212 μg g−1). Although the DOIP is considered one of PAE alternatives, the detected amount of it revealed evident ecotoxicity, especially in the aquatic environment. Other additives, including antioxidants, lubricants, surfactants, slip agents, and adhesives, were also qualitatively detected in commercial products. This is the first study to quantify the amounts of PAEs leached from biodegradable plastics through water mimicking PAE leaching out from biodegradable plastics to soil leachate when landfilled and evaluate their potential ecotoxicity. Despite their potential toxicity, commercial biodegradable plastics are currently marketed and promoted as environmentally friendly materials, which could lead to indiscriminate public consumption. Therefore, in addition to improving biodegradable plastics, developing eco-friendly additives is significant. Future studies should investigate the leaching kinetics in soil leachate over time and toxicity of biodegradable plastics after landfill disposal.
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