Wiesinger Helene, Shalin Anna, Huang Xinmei, Siegrist Armin, Plinke Nils, Hellweg Stefanie, Wang Zhanyun
Chair of Ecological Systems Design, Institute of Environmental Engineering, ETH Zürich, 8093 Zürich, Switzerland.
National Centre of Competence in Research (NCCR) Catalysis, Institute of Environmental Engineering, ETH Zürich, 8093 Zürich, Switzerland.
Environ Sci Technol Lett. 2024 Oct 29;11(11):1147-1160. doi: 10.1021/acs.estlett.4c00355. eCollection 2024 Nov 12.
Plastics contain various chemical substances, which can impact human and ecosystem health and the transition to a circular economy. Meanwhile, information on the presence of individual substances in plastics is generally not made publicly available, but relies on extensive analytical efforts. Here, we review measurement studies of chemicals in plastics and compile them into a new LitChemPlast database. Over 3500 substances, stemming from all plastic life-cycle stages, have been detected in different plastics in 372 studies. Approximately 75% of them have only been detected in nontargeted workflows, while targeted analyses have focused on limited well-known substances, particularly metal(loid)s, brominated flame retardants, and -phthalates. Some product categories have rarely been studied despite economic importance, e.g., consumer and industrial packaging (other than food packaging), building and construction, and automotive plastics. Likewise, limited studies have investigated recycled plastics, while existing measurements of recycled plastics show higher detection frequencies and median concentrations of regulated brominated flame retardants across many product categories. The LitChemPlast database may be further developed or utilized, e.g., for exposure assessment or substance flow analysis. Nonetheless, the plethora of relevant substances and products underscores the necessity for additional measures to enable the transition to a safe circular plastics economy.
塑料含有多种化学物质,这些物质会影响人类和生态系统健康以及向循环经济的转型。与此同时,关于塑料中个别物质存在情况的信息通常不会公开,而是依赖大量的分析工作。在此,我们回顾了塑料中化学物质的测量研究,并将其汇编成一个新的LitChemPlast数据库。在372项研究中,已在不同塑料中检测到来自塑料生命周期各阶段的3500多种物质。其中约75%仅在非靶向工作流程中被检测到,而靶向分析则集中在有限的知名物质上,特别是金属(类金属)、溴化阻燃剂和邻苯二甲酸盐。尽管具有经济重要性,但一些产品类别很少被研究,例如消费和工业包装(食品包装除外)、建筑和汽车塑料。同样,对回收塑料的研究也有限,而现有对回收塑料的测量表明,在许多产品类别中,受监管的溴化阻燃剂的检测频率和中位浓度更高。LitChemPlast数据库可进一步开发或利用,例如用于暴露评估或物质流分析。尽管如此,大量相关物质和产品凸显了采取额外措施以实现向安全循环塑料经济转型的必要性。