典型生物塑料薄膜光降解过程及相应有害物质释放风险研究
CSTR:
作者:
作者单位:

1.合肥工业大学资源与环境工程学院2.安徽省生态环境科学研究院;2.安徽省生态环境科学研究院;3.1.中国科学技术大学 2.安徽省生态环境科学研究院;4.合肥工业大学资源与环境工程学院;5.土壤与农业可持续发展全国重点实验室(中国科学院南京土壤研究所)

作者简介:

通讯作者:

中图分类号:

基金项目:

安徽省省级生态环境科技项目


Research on the photodegradation process of typical bioplastic films and the corresponding risk of harmful substance release
Author:
Affiliation:

1.College of Resources and Environmental Engineering, Hefei University of Technology 2Anhui Academy of Environmental Science Research;2.1.Anhui Academy of Environmental Science Research2.College of Resources and Environmental Engineering, Hefei University of Technology 2Anhui Academy of Environmental Science Research;3.1. University of Science and Technology of China 2..Anhui Academy of Environmental Science Research;4.College of Resources and Environmental Engineering, Hefei University of Technology;5.Anhui Academy of Environmental Science Research;6.State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 211135, China

Fund Project:

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 资源附件
  • |
  • 文章评论
    摘要:

    生物塑料因原料清洁以及可降解性好等优点被广泛应用,但其降解尤其是光降解过程中材料物理化学性质的动态变化规律、以及次生污染物的生成机制及其环境归趋尚缺乏定量评估。本研究通过模拟太阳光加速降解实验,探讨了三种典型生物塑料薄膜(淀粉基、纤维素基及聚乳酸)与一种传统石油基聚乙烯(PE)薄膜在0-30天光老化过程中降解动态及微塑料、添加剂等有害物质释放情况。扫描电镜(SEM)观测到生物塑料薄膜表面在30 d时光致裂纹密度较初始状态增加2~3倍,傅里叶红外光谱(FTIR)显示羰基指数(CI)上升50~80%(1078 cm?1处峰强显著增强),X射线衍射(XRD)分析表明结晶度下降20~35%,三种材质结构相似,而传统石油基塑料以C-C键为主环境降解能力相对较弱。定量分析发现,在四种材料中,淀粉基生物膜释放的微塑料数量最高,达到7×107以上。气相色谱-质谱(GC-MS)检测显示生物膜中邻苯二甲酸酯类添加剂(PAEs)的迁移,其中邻苯二甲酸二辛酯(DEHP)、邻苯二甲酸二丁酯(DBP)均有释放,虽未超出《水质6种邻苯二甲酸酯类化合物的测定液相色谱-三重四极杆质谱法》(HJ 1242-2022)标准,但仍有可能造成环境风险。研究表明,尽管生物降解薄膜具备快速表观分解特性,但其光降解过程中产生的微塑料、DOM及PAEs等次生污染物可能形成复合污染链,对土壤-水体生态系统构成潜在威胁,亟需在材料设计与标准制定中强化降解可控性和全生命周期风险评估。

    Abstract:

    Bioplastics are widely used due to their clean raw materials and good degradability. However, the dynamic changes in the physical and chemical properties of materials, especially during photodegradation, as well as the generation mechanism of secondary pollutants and their environmental trends, still lack quantitative evaluation.【Objective】This study investigated the degradation dynamics of three types of bioplastic films (starch based, cellulose based, and polylactic acid based) and a traditional petroleum based polyethylene (PE) film during 0-30 days of light aging, as well as the release of harmful substances such as microplastics and additives, by simulating accelerated degradation experiments under sunlight. 【Result】Scanning electron microscopy (SEM) observed that the density of photo induced cracks on the surface of bioplastic film increased by 2-3 times compared to the initial state after 30 days. Fourier transform infrared spectroscopy (FTIR) showed a 50-80% increase in carbonyl index (CI) (peak intensity significantly increased at 1078 cm ?1), and X-ray diffraction (XRD) analysis showed a 20-35% decrease in crystallinity. The three materials have similar structures, while traditional petroleum based plastics mainly rely on C-C bonds and have relatively weak environmental degradation ability. Quantitative analysis found that among the four materials, starch based biofilm released the highest number of microplastics, reaching more than 7 × 107 pieces. Gas chromatography-mass spectrometry (GC-MS) detection showed the migration of phthalate ester additives (PAEs) in biofilms, among which dioctyl phthalate (DEHP) and dibutyl phthalate (DBP) were released. Although they did not exceed the standard of "Determination of Six Phthalate Compounds in Water Quality by Liquid Chromatography Triple Quadrupole Mass Spectrometry" (HJ 1242-2022), they may still pose environmental risks. 【Conclusion】 Research has shown that although biodegradable films have rapid apparent decomposition characteristics, secondary pollutants such as microplastics, DOM, and PAEs generated during their photodegradation process may form a composite pollution chain, posing a potential threat to soil water ecosystems. It is urgent to strengthen degradation controllability and full lifecycle risk assessment in material design and standard setting.Bioplastics are widely used and researched due to their clean source and good biodegradability.

    参考文献
    相似文献
    引证文献
引用本文

陈志翔,夏冰,高文静,钱家忠,陈红枫,胡鹏杰.典型生物塑料薄膜光降解过程及相应有害物质释放风险研究[J].土壤学报,2026,63(2). DOI:10.11766/trxb202506120279 Chen Zhixiang, Xia Bing, Gao Wenjin, Qian Jiazhong, Chen Hongfeng, Hu Pengjie. Research on the photodegradation process of typical bioplastic films and the corresponding risk of harmful substance release[J]. Acta Pedologica Sinica,2026,63(2).

复制
分享
相关视频

文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2025-06-12
  • 最后修改日期:2025-10-16
  • 录用日期:2025-12-29
  • 在线发布日期: 2025-12-29
  • 出版日期:
文章二维码