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Titanium Dioxide Nanoparticle Circulation in an Aquatic Ecosystem

机译:水生生态系统中的二氧化钛纳米颗粒循环

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Nanotechnology is a dynamically developing field of scientific and industrial interest across the entire world, and the commercialization of nanoparticles (NPs) is rapidly expanding. Incorporation of nanotechnologies into a range of manufactured goods results in increasing concern regarding the subsequent release of engineered NPs into the environment. One of the biggest threats of using NPs is the transfer and magnification of these particles in the trophic chain. The aim of the studies was the evaluation of the distribution of TiO2 NP contamination in the aquatic ecosystem under laboratory conditions. Bioaccumulation of TiO2 NPs by plants (Elodea canadensis) and fish (Danio rerio) in the source of contamination was investigated. The studies were focused on the consequences of short-term water contamination with TiO2 NPs and the secondary contamination of the components of the investigated model ecosystem (plants, sediments). It was found that in the fish and the plants exposed to NP contamination, the amount of Ti was higher than in the control, indicating an effective bioaccumulation of NPs or ions originating from NPs. It was clearly shown that the NPs present in the sediments are available to plants and fish. Additionally, the aquatic plants, an important trophic level in the food chain, can accumulate NPs and be a source of NPs for higher organisms. It was concluded that even an incidental contamination of water by NPs may result in long-term consequences induced by the release of NPs.
机译:纳米技术是一个动态发展的科学和工业领域,在全世界范围内,纳米颗粒(NPs)的商业化正在迅速扩展。将纳米技术结合到一系列制成品中,导致人们对随后将工程化NP释放到环境中的担忧日益增加。使用NP的最大威胁之一是营养链中这些颗粒的转移和放大。研究的目的是评估实验室条件下水生生态系统中TiO2 NP污染的分布。研究了污染源中植物(加拿大油菜(Elodea canadensis))和鱼类(Danio rerio)对TiO2 NPs的生物累积。研究的重点是TiO2 NPs对短期水质污染的影响以及所研究的模型生态系统各组成部分(植物,沉积物)的二次污染。发现在暴露于NP污染的鱼类和植物中,Ti的含量高于对照,表明NP或源自NP的离子的有效生物富集。清楚地表明,沉积物中存在的NP可用于植物和鱼类。另外,水生植物是食物链中重要的营养水平,可以积累NP,并成为高等生物的NP来源。结论是,即使NP偶然污染水,也可能导致NP释放引起长期后果。

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