Department of Environmental Engineering, Norwegian Geotechnical Institute, NO-0806 Oslo, Norway.
Department of Chemistry, Norwegian University of Science and Technology (NTNU), P.O. Box 8900, NO-7491, Trondheim, Norway.
Environ Sci Technol. 2021 Jun 1;55(11):7246-7255. doi: 10.1021/acs.est.1c01512. Epub 2021 May 11.
We described in 2017 how weathering plastic litter in the marine environment fulfils two of three criteria to impose a planetary boundary threat related to "chemical pollution and the release of novel entities": (1) planetary-scale exposure, which (2) is not readily reversible. Whether marine plastics meet the third criterion, (3) eliciting a disruptive impact on vital earth system processes, was uncertain. Since then, several important discoveries have been made to motivate a re-evaluation. A key issue is if weathering macroplastics, microplastics, nanoplastics, and their leachates have an inherently higher potential to elicit adverse effects than natural particles of the same size. We summarize novel findings related to weathering plastic in the context of the planetary boundary threat criteria that demonstrate (1) increasing , (2) processes leading to poorly reversible pollution, and (3) (eco)toxicological and their thresholds. We provide evidence that the third criterion could be fulfilled for weathering plastics in sensitive environments and therefore conclude that weathering plastics pose a planetary boundary threat. We suggest future research priorities to better understand (eco)toxicological hazards modulated by increasing exposure and continuous weathering processes, to better parametrize the planetary boundary threshold for plastic pollution.
我们在 2017 年描述了海洋环境中塑料垃圾的风化如何满足与“化学污染和新型实体的释放”相关的三个行星边界威胁标准中的两个:(1)行星规模的暴露,这(2)不容易逆转。海洋塑料是否符合第三个标准,(3)对重要的地球系统过程产生破坏性影响,尚不确定。自那时以来,已经有一些重要的发现促使我们重新评估。一个关键问题是,如果风化后的大塑料、微塑料、纳米塑料及其浸出物比相同大小的天然颗粒更有可能引起不良影响。我们总结了与行星边界威胁标准相关的塑料风化方面的新发现,这些发现表明(1)增加,(2)导致难以逆转的污染的过程,以及(3)(生态)毒性及其阈值。我们有证据表明,风化塑料在敏感环境中可能满足第三个标准,因此得出结论,风化塑料构成了行星边界威胁。我们建议未来的研究重点,以更好地了解(生态)毒性危害,这些危害受到不断增加的暴露和风化过程的调节,以更好地确定塑料污染的行星边界阈值。