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Potential Hazard of Lanthanides and Lanthanide-Based Nanoparticles to Aquatic Ecosystems: Data Gaps Challenges and Future Research Needs Derived from Bibliometric Analysis

机译:镧系元素和基于镧系元素的纳米颗粒对水生生态系统的潜在危害:数据计量分析带来的数据空白挑战和未来研究需求

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摘要

Lanthanides (Ln), applied mostly in the form of nanoparticles (NPs), are critical to emerging high-tech and green energy industries due to their distinct physicochemical properties. The resulting anthropogenic input of Ln and Ln-based NPs into aquatic environment might create a problem of emerging contaminants. Thus, information on the biological effects of Ln and Ln-based NPs is urgently needed for relevant environmental risk assessment. In this mini-review, we made a bibliometric survey on existing scientific literature with the main aim of identifying the most important data gaps on Ln and Ln-based nanoparticles’ toxicity to aquatic biota. We report that the most studied Ln for ecotoxicity are Ce and Ln, whereas practically no information was found for Nd, Tb, Tm, and Yb. We also discuss the challenges of the research on Ln ecotoxicity, such as relevance of nominal versus bioavailable concentrations of Ln, and point out future research needs (long-term toxicity to aquatic biota and toxic effects of Ln to bottom-dwelling species).
机译:镧系元素(Ln)主要以纳米颗粒(NPs)的形式应用,由于其独特的理化特性,对新兴的高科技和绿色能源产业至关重要。 Ln和基于Ln的NP的人为输入造成的水生环境可能会产生新出现的污染物问题。因此,有关环境风险评估迫切需要有关Ln和基于Ln的NP的生物学效应的信息。在此小型审查中,我们对现有的科学文献进行了文献计量研究,其主要目的是确定有关Ln和基于Ln的纳米粒子对水生生物毒性的最重要的数据空白。我们报告说,对Ln的生态毒性研究最多的是Ce和Ln,而实际上没有发现有关Nd,Tb,Tm和Yb的信息。我们还讨论了有关Ln生态毒性研究的挑战,例如Ln标称浓度与生物利用浓度的相关性,并指出了未来的研究需求(对水生生物的长期毒性以及Ln对底栖物种的毒性影响)。

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