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全球纳米塑料研究进展和热点的可视化图谱:科学计量评估分析。

Visual mapping of global nanoplastics research progresses and hotspots: a scientometric assessment analysis.

机构信息

Shandong Key Laboratory of Biophysics, Institute of Biophysics, Dezhou University, Dezhou, 253023, People's Republic of China.

College of Resources and Environmental Sciences, China Agricultural University, Beijing, 100193, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2023 Nov;30(54):114739-114755. doi: 10.1007/s11356-023-30597-3. Epub 2023 Oct 31.

Abstract

Environmental plastic wastes are continuously degraded into microplastics (MPs) and nanoplastics (NPs); the latter are more potentially harmful to organisms and human health as their smaller size and higher surface-to-volume ratio. Previous reviews on NPs mainly concentrate on specific aspects, such as sources, environmental behavior, and toxicological effects, but few focused on NPs-related scientific publications from a global point of view. Therefore, this bibliometric study aims to summarize the research themes and trends on NPs and also propose potential directions for future inquiry. Related papers were downloaded from the Web of Science Core Collection database on NPs published from 2008 to 2021, and then retrieved information was analyzed using CiteSpace 6.1 R2 and VOSviewer (version 1.6.). Research on NPs mainly involved environmental behaviors, toxicological effects, identification and extraction of NPs, whereas aquatic environments, especially marine systems, attracted more attentions from these scientists compare to terrestrial environments. Furthermore, the adsorption behavior of pollutants by NPs and the toxicological effects of organisms exposed to NPs are the present hotspots, while the regulation of humic acid (HA) on NPs behaviors and the environmental behavior of NPs in freshwater, like rivers and lakes, are the frontier areas of research. This study also explored the possible opportunities and challenges that may be faced in NPs research, which provide a valuable summary and outlook for ongoing NPs-related research, which may be of intrigue and noteworthiness for relevant researchers.

摘要

环境中的塑料废弃物不断降解为微塑料(MPs)和纳米塑料(NPs);由于后者粒径更小、比表面积更大,因此对生物体和人类健康的潜在危害更大。先前关于 NPs 的研究主要集中在特定方面,如来源、环境行为和毒理学效应等,而很少从全球角度关注与 NPs 相关的科学出版物。因此,本文献计量研究旨在总结 NPs 的研究主题和趋势,并为未来的研究提出潜在的方向。从 2008 年到 2021 年,从 Web of Science Core Collection 数据库中下载了有关 NPs 的相关论文,并使用 CiteSpace 6.1 R2 和 VOSviewer(版本 1.6.)分析检索到的信息。NPs 的研究主要涉及环境行为、毒理学效应、NPs 的识别和提取,而与陆地环境相比,水生环境,特别是海洋系统,更受这些科学家的关注。此外,污染物被 NPs 吸附的行为和生物体暴露于 NPs 的毒理学效应是当前的热点,而腐殖酸(HA)对 NPs 行为的调节以及 NPs 在淡水(如河流和湖泊)中的环境行为是研究的前沿领域。本研究还探讨了 NPs 研究中可能面临的机遇和挑战,为正在进行的 NPs 相关研究提供了有价值的总结和展望,可能会引起相关研究人员的兴趣和关注。

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