Kalčíková Gabriela, Žgajnar Gotvajn Andreja, Kladnik Aleš, Jemec Anita
University of Ljubljana, Faculty of Chemistry and Chemical Technology, 113 Večna pot, SI-1000 Ljubljana, Slovenia.
University of Ljubljana, Faculty of Chemistry and Chemical Technology, 113 Večna pot, SI-1000 Ljubljana, Slovenia.
Environ Pollut. 2017 Nov;230:1108-1115. doi: 10.1016/j.envpol.2017.07.050. Epub 2017 Aug 3.
Microplastics (MP), small plastic particles below 5 mm, have become one of the central concerns of environmental risk assessment. Microplastics are continuously being released into the aquatic environment either directly through consumer products or indirectly through fragmentation of larger plastic materials. The aim of our study was to investigate the effect of polyethylene microbeads from cosmetic products on duckweed (Lemna minor), a freshwater floating plant. The effects of microbeads from two exfoliating products on the specific leaf growth rate, the chlorophyll a and b content in the leaves, root number, root length and root cell viability were assessed. At the same time, water leachates from microbeads were also prepared to exclude the contribution of cosmetic ingredients on the measured impacts. Specific leaf growth rate and content of photosynthetic pigments in duckweed leaves were not affected by polyethylene microbeads, but these microbeads significantly affected the root growth by mechanical blocking. Sharp particles also reduced the viability of root cells, while the impact of microbeads with a smooth surface was neglected. It was concluded that microbeads from cosmetic products can also have negative impacts on floating plants in freshwater ecosystems.
微塑料(MP)是指直径小于5毫米的小塑料颗粒,已成为环境风险评估的核心关注点之一。微塑料正通过消费品直接或通过较大塑料材料的破碎间接不断释放到水生环境中。我们研究的目的是调查化妆品中的聚乙烯微珠对浮萍(小眼子菜)的影响,浮萍是一种淡水漂浮植物。评估了两种去角质产品中的微珠对特定叶片生长速率、叶片中叶绿素a和b含量、根数、根长和根细胞活力的影响。同时,还制备了微珠的水浸出液,以排除化妆品成分对测量影响的贡献。浮萍叶片的特定生长速率和光合色素含量不受聚乙烯微珠的影响,但这些微珠通过机械阻塞显著影响根系生长。尖锐颗粒还降低了根细胞的活力,而表面光滑的微珠的影响则被忽略。得出的结论是,化妆品中的微珠也会对淡水生态系统中的漂浮植物产生负面影响。