1.中国科学院南京土壤研究所,江苏 南京 211135
2.生态环境部土壤环境管理与污染控制重点实验室/生态环境部南京环境科学研究所,江苏 南京 210042
韦 婧,博士,研究员,研究方向:污染物土-水界面环境过程机理与土壤减污固碳协同修复,E-mail:weijing@nies.org
收稿:2026-05-05,
修回:2026-06-03,
录用:2026-06-08,
网络首发:2026-06-10,
纸质出版:2026-07-15
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黄玉娟,杨明辉,王顺扬,王丽娜,宋家音,王璐,韦婧.(微)塑料释放及环境介质中邻苯二甲酸酯类增塑剂分析方法研究进展[J].分析测试学报,2026,45(07):1-10.
HUANG Yu-juan,YANG Ming-hui,WANG Shun-yang,WANG Li-na,SONG Jia-yin,WANG Lu,WEI Jing.Progress in Analytical Methods for Phthalate Plasticizers in(Micro) plastic Release Systems and Environmental Media[J].Journal of Instrumental Analysis,2026,45(07):1-10.
黄玉娟,杨明辉,王顺扬,王丽娜,宋家音,王璐,韦婧.(微)塑料释放及环境介质中邻苯二甲酸酯类增塑剂分析方法研究进展[J].分析测试学报,2026,45(07):1-10. DOI: 10.12452/j.fxcsxb.26050501.
HUANG Yu-juan,YANG Ming-hui,WANG Shun-yang,WANG Li-na,SONG Jia-yin,WANG Lu,WEI Jing.Progress in Analytical Methods for Phthalate Plasticizers in(Micro) plastic Release Systems and Environmental Media[J].Journal of Instrumental Analysis,2026,45(07):1-10. DOI: 10.12452/j.fxcsxb.26050501.
邻苯二甲酸酯类化合物(PAEs)是塑料制品中广泛使用的增塑剂,因其潜在健康风险受到持续关注和管控。尽管其常规检测技术已较为成熟,但面向塑料及微塑料释放体系和不同环境基质中的方法适用性仍缺乏系统梳理。本文围绕塑料及微塑料样品与环境介质中PAEs的分析方法进行综述,重点梳理不同基质中PAEs的提取、富集、净化和检测技术。塑料制品与微塑料在样品形态、比表面积、老化程度和环境暴露历史上存在差异,导致二者释放特征不同,PAEs释放行为及其结果解释也需加以区分。对于塑料与微塑料样品,强溶剂提取(索氏提取、快速溶剂萃取等)用于表征可提取总量或潜在源强,而静态、动态浸出及固相吸附汇体系用于模拟特定条件下的迁移释放。对于不同环境介质样品(土壤、沉积物、水体、大气/灰尘和生物样品),前处理方法需根据基质组成、目标物赋存状态和干扰特征进行优化。仪器分析方面,气相色谱-质谱或气相色谱-串联质谱是PAEs母体化合物定量分析的主要技术,液相色谱-串联质谱更适用于代谢物和部分极性目标物分析,二维气相色谱-飞行时间质谱和高分辨质谱可用于替代增塑剂、非有意添加物和未知转化产物筛查。未来应加强多基质前处理方法比对、替代增塑剂及相关添加剂谱图扩展、空白污染控制、同位素内标校正和释放实验标准化,以提高塑料及微塑料释放和环境介质中增塑剂分析结果的准确性和可比性。
Phthalate esters(PAEs) are widely used plasticizers in plastic products and have received continuous attention and regulatory control due to their potential health risks. Although conventional detection techniques for PAEs are relatively mature,the applicability of analytical methods to plastic and microplastic release systems and different environmental matrices has not been systematically reviewed. This review focuses on analytical methods for PAEs in plastic and microplastic samples and environmental media,with emphasis on extraction,enrichment,cleanup,and detection techniques for different matrices. Plastic products and microplastics differ in sample morphology,specific surface area,aging degree,and environmental exposure history,leading to distinct release characteristics; therefore,PAE release behavior and the interpretation of analytical results should be differentiated. For plastic and microplastic samples,strong solvent extraction methods,such as Soxhlet extraction and accelerated solvent extraction,are used to characterize extractable contents or potential source strength,whereas static leaching,dynamic leaching,and solid-phase sink systems are used to simulate migration and release under specific conditions. For different environmental matrices,including soil,sediment,water,air/dust,and biological samples,sample preparation methods should be optimized according to matrix composition,occurrence forms of target compounds,and interference characteristics. In terms of instrumental analysis,GC-MS and GC-MS/MS remain the main techniques for quantifying parent PAEs,LC-MS/MS is more suitable for metabolites and some polar target compounds,and GC×GC-TOF-MS and high-resolution mass spectrometry can be used for screening alternative plasticizers,non-intentionally added substances,and unknown transformation products. Future studies should strengthen the comparison of pretreatment methods across multiple matrices,expand spectral profiling of alternative plasticizers and related additives,improve blank contamination control and isotope internal standard correction,and promote standardization of release experiments,thereby improving the accuracy and comparability of plasticizer analytical results in plastic and microplastic release systems and environmental media.
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