在线研究的血加速衰老过程和聚乙烯四甲酸的毒性
Jixing Liu1, Yuliang Huang1, Gaosheng Zhao1
1School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, China.
Journal of hazardous materials
|June 28, 2023
概括
使用非热等离子体进行模拟塑料老化,揭示了聚乙烯四甲酸 (PET) 薄膜中显著的表面变化和空气中颗粒生成的增加. 陈旧的PET薄膜也对Caenorhabditis elegans的毒性增加,突出了环境风险.
科学领域:
- 环境科学 环境科学
- 材料科学 材料科学 材料科学
- 毒理学 毒理学 毒理学
背景情况:
- 塑料老化是一个关键的环境过程,影响材料的行为和毒性.
- 了解塑料降解对于评估生态影响至关重要.
研究的目的:
- 使用非热等离子体模拟和描述聚乙烯二甲 (PET) 薄膜的老化过程.
- 研究老化对PET薄膜表面形态,毒性和空气中的颗粒产生的影响.
主要方法:
- 使用非热等离子治疗来老化PET薄膜.
- 用显微镜分析了表面形态.
- 使用Caenorhabditis elegans进行毒性评估.
- 空气中的微粒在实时使用单颗粒气溶质谱学进行了细微粒子的特征.
主要成果:
- 老化导致表面粗,孔隙形成和PET薄膜上的裂.
- 陈旧的PET薄膜显著减少了Caenorhabditis elegans的头部撞击,身体曲和繁殖规模.
- 经过90分钟的老化后,颗粒生成加速,超过15,000颗细颗粒 (峰值大小为0.4微米) 从两个PET薄膜在180分钟内产生.
- 空气中的颗粒含有金属,无机非金属和有机成分.
结论:
- 非热等离子体有效模拟塑料老化,诱导物理和毒理变化.
- 陈旧的PET薄膜有助于空气中的微粒污染,造成潜在的环境风险.
- 这项研究为评估老化塑料对环境的影响提供了关键数据.
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