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比较原始和 UV-VIS 老化微塑料的影响:模式陆地和淡水甲壳类动物的行为反应。

Comparing the effects of pristine and UV-VIS aged microplastics: Behavioural response of model terrestrial and freshwater crustaceans.

机构信息

University of Ljubljana, Biotechnical Faculty, Department of Biology, Jamnikarjeva 101, Ljubljana SI-1000, Slovenia.

Helmholtz Centre for Environmental Research - UFZ, Permoserstr. 15, Leipzig 03418, Germany.

出版信息

Ecotoxicol Environ Saf. 2024 Oct 15;285:117020. doi: 10.1016/j.ecoenv.2024.117020. Epub 2024 Sep 13.

Abstract

Physico-chemical properties of microplastics (MPs) change during weathering in the environment. There is a lack of knowledge about the effects of such environmentally relevant MPs on organisms. We investigated: 1) the physico-chemical changes of MPs due to UV-VIS weathering, and 2) compared the effect of pristine and aged MPs on the behaviour of the water flea Daphnia magna and terrestrial crustacean Porcellio scaber. Dry powders of MPs were produced from widely used polymer types: disposable three-layer polypropylene (PP) medical masks (inner, middle and outer), polyester textile fibres, car tires and low-density polyethylene (LDPE) bags and were subjected to accelerated ultraviolet-visible (UV-VIS) ageing. Our results show that the extent of transformation depends on the type of polymer, with PP showing the most changes, followed by LDPE, textile fibres and tire particles. Obvious fragmentation was observed in PP and textile fibres. In the case of PP, but not polyester textile fibres, changes in FTIR spectra and surface properties were observed. Tire particles and LDPE did not change in size, but clear changes were observed in their FTIR spectra. Most MPs, aged and pristine, did not affect the swimming of daphnids. The only effect observed was a significant increase in path length and swimming speed for the pristine tire particles when the recording was done with particles remaining in the wells. After transfer to a clean medium, this effect was no longer present, suggesting a physical rather than chemical effect. Similarly, woodlice showed no significant avoidance response to the MPs tested, although there was a noticeable trend to avoid soils contaminated with pristine polyester textile fibers and preference towards the soils contaminated with aged MP of the middle mask layer. Overall, the apparent changes in physico-chemical properties of MPs after accelerated ageing were not reflected in their effects on woodlice and daphnids.

摘要

微塑料(MPs)在环境风化过程中理化性质会发生变化。对于此类与环境相关的 MPs 对生物体的影响,我们知之甚少。我们研究了:1)由于 UV-VIS 风化导致的 MPs 的理化变化,以及 2)比较原始和老化 MPs 对水蚤 Daphnia magna 和陆生甲壳类 Porcellio scaber 行为的影响。从广泛使用的聚合物类型中制备 MPs 的干粉:一次性三层聚丙烯(PP)医用口罩(内、中、外)、聚酯纺织纤维、汽车轮胎和低密度聚乙烯(LDPE)袋,并进行加速紫外线可见(UV-VIS)老化。我们的结果表明,转化的程度取决于聚合物的类型,其中 PP 变化最大,其次是 LDPE、纺织纤维和轮胎颗粒。在 PP 和纺织纤维中观察到明显的碎片。在 PP 的情况下,但不是聚酯纺织纤维,观察到 FTIR 光谱和表面性质的变化。轮胎颗粒和 LDPE 的尺寸没有变化,但在其 FTIR 光谱中观察到明显的变化。大多数 MPs,原始和老化,对水蚤的游泳没有影响。观察到的唯一影响是原始轮胎颗粒在记录时留在井中的情况下,路径长度和游泳速度显著增加。转移到干净的介质后,这种影响不再存在,这表明是物理而非化学效应。同样,对于测试的 MPs,木虱没有表现出明显的回避反应,尽管有一个明显的趋势是回避污染有原始聚酯纺织纤维的土壤,并且更喜欢污染有老化中间口罩层 MP 的土壤。总体而言,加速老化后 MPs 理化性质的明显变化并未反映在它们对木虱和水蚤的影响上。

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