Library, Southwest Jiaotong University, Chengdu, 611756, Sichuan, China.
Faculty of Geosciences and Environmental Engineering, Southwest Jiaotong University, Chengdu, 611756, Sichuan, China.
Bull Environ Contam Toxicol. 2021 Oct;107(4):585-596. doi: 10.1007/s00128-021-03201-y. Epub 2021 Mar 29.
Microplastics are abundant in the environment and have been proven to affect ecosystems and human health. Microorganisms play essential roles in the ecological fate of microplastics pollution, potentially yielding positive and negative effects. This study reviews the research progress of interaction between microplastics and microorganisms based on a bibliometric and visualized analysis. Publication numbers, subjects, countries, institutions, highly cited papers, and keywords were investigated by statistical analysis. VOSviewer software was applied to visualize the co-occurrence and aggregation of national collaboration, subjects, and keywords. Results revealed trends of rapidly increasing publication output that involved multiple disciplines. Contributing countries and their institutions were also identified in this study. Keywords, co-occurrence network visualization, highly cited papers analysis, and knowledge-based mining were all used to give insight into microorganisms or microbiota related to microplastics pollution, and the potential impacts that microplastics biodegradation may cause. In the future, research efforts need to focus on the following areas: microbial degradation processes and mechanisms, assessment of ecological microplastics risks, and potential effects of microplastics bioaccumulation and human exposure. This study provides a holistic view of ongoing microplastics and related microbial research, which may be useful for future microplastics biodegradation studies.
微塑料在环境中大量存在,并已被证明会影响生态系统和人类健康。微生物在微塑料污染的生态命运中起着至关重要的作用,可能产生积极和消极的影响。本研究基于文献计量学和可视化分析,综述了微塑料与微生物相互作用的研究进展。通过统计分析,研究了出版物数量、主题、国家、机构、高被引论文和关键词。VOSviewer 软件用于可视化国家合作、主题和关键词的共现和聚集。结果表明,涉及多个学科的出版物数量呈快速增长趋势。本研究还确定了有贡献的国家和机构。关键词、共现网络可视化、高被引论文分析和基于知识的挖掘,都用于深入了解与微塑料污染相关的微生物或微生物群,以及微塑料生物降解可能带来的潜在影响。未来,研究工作需要集中在微生物降解过程和机制、生态微塑料风险评估以及微塑料生物积累和人类暴露的潜在影响等方面。本研究提供了正在进行的微塑料及其相关微生物研究的整体视图,这可能对未来的微塑料生物降解研究有用。