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:紫外线老化微塑料渗滤液的一项研究中的运动行为。 需注意,原英文文本表述似乎不太完整,“Locomotor behavior of”后面缺少具体所指对象。

Locomotor behavior of : a study with leachates from UV-weathered microplastics.

作者信息

Klein Kristina, Heß Sebastian, Schulte-Oehlmann Ulrike, Oehlmann Jörg

机构信息

Department Aquatic Ecotoxicology, Johann Wolfgang Goethe Universität Frankfurt am Main, Frankfurt am Main, Germany.

出版信息

PeerJ. 2021 Nov 9;9:e12442. doi: 10.7717/peerj.12442. eCollection 2021.

Abstract

Weathering of plastics leads to the formation of increasingly smaller particles with the release of chemical compounds. The latter occurs with currently unknown environmental impacts. Leachate-induced effects of weathered microplastics (MPs) are therefore of increasing concern. To investigate the toxicity of the chemical mixtures from such plastics, we exposed the freshwater shrimp to enriched leachates from unweathered and artificially weathered (UV-A/B light) MPs (≤1 mm) from recycled low-density polyethylene (LDPE-R) pellets and from a biodegradable, not fully bio-based starch blend (SB) foil. We analyzed the individual locomotor activity (moved distance and frozen events) on day 1, 3, 7 and 14 of exposure to five leachate concentrations equivalent to 0.40-15.6 g MPs L, representing the upper scale of MPs that have been found in the environment. The median moved distance did not change as a function of concentration, except for the unweathered SB treatment on day 14 that indicated hyperactivity with increasing concentrations. Significant impacts were solely detected for few concentrations and exposure days. Generally, no consistent trend was observed across the experiments. We further assessed the baseline toxicity of the samples in the Microtox assay and detected high bioluminescence inhibitions of the bacterium . This study demonstrates that neither the recycled nor the biodegradable material are without impacts on test parameters and therefore cannot be seen as safe alternative for conventional plastics regarding the toxicity. However, the observed toxicity did not result in substantial effects on the behavior of shrimps. Overall, we assume that the two endpoints examined in the atyid shrimp were not sensitive to chemicals leaching from plastics or that effects on the level affect other toxic endpoints which were not considered in this study.

摘要

塑料的风化会导致形成越来越小的颗粒,并释放出化合物。后者会产生目前尚不清楚的环境影响。因此,渗滤液引起的风化微塑料(MPs)的影响越来越受到关注。为了研究此类塑料中化学混合物的毒性,我们将淡水虾暴露于来自未风化和人工风化(UV-A/B光)的MPs(≤1毫米)的浓缩渗滤液中,这些MPs来自回收的低密度聚乙烯(LDPE-R)颗粒和一种可生物降解但并非完全基于生物的淀粉混合物(SB)箔。我们分析了在暴露于相当于0.40-15.6克MPs/L的五种渗滤液浓度下第1、3、7和14天的个体运动活性(移动距离和静止事件),这些浓度代表了环境中发现的MPs的上限。除了第14天未风化的SB处理显示随着浓度增加出现多动外,移动距离的中位数并未随浓度变化。仅在少数浓度和暴露天数下检测到显著影响。总体而言,在整个实验中未观察到一致的趋势。我们还在Microtox试验中评估了样品的基线毒性,并检测到对细菌的高生物发光抑制。这项研究表明,无论是回收材料还是可生物降解材料都对测试参数有影响,因此在毒性方面不能被视为传统塑料的安全替代品。然而,观察到的毒性并未对虾的行为产生实质性影响。总体而言,我们认为在atyid虾中检测的两个终点对塑料渗出的化学物质不敏感,或者对该水平的影响会影响本研究未考虑的其他毒性终点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/479f/8588861/50864120d06b/peerj-09-12442-g001.jpg

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