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锰(II)细菌氧化研究进展:基于CiteSpace的可视化文献计量分析

Advances in Research on Bacterial Oxidation of Mn(II): A Visualized Bibliometric Analysis Based on CiteSpace.

作者信息

Mo Wentao, Wang Hang, Wang Jianghan, Wang Yue, Liu Yunfei, Luo Yi, He Minghui, Cheng Shuang, Mei Huiting, He Jin, Su Jianmei

机构信息

Hubei Key Laboratory of Regional Development and Environmental Response, Faculty of Resources and Environmental Science, Hubei University, Wuhan 430062, China.

National Key Laboratory of Agricultural Microbiology, College of Life Science and Technology, Huazhong Agricultural University, Wuhan 430062, China.

出版信息

Microorganisms. 2024 Aug 7;12(8):1611. doi: 10.3390/microorganisms12081611.

Abstract

Manganese (Mn) pollution poses a serious threat to the health of animals, plants, and humans. The microbial-mediated Mn(II) removal method has received widespread attention because of its rapid growth, high efficiency, and economy. Mn(II)-oxidizing bacteria can oxidize toxic soluble Mn(II) into non-toxic Mn(III/IV) oxides, which can further participate in the transformation of other heavy metals and organic pollutants, playing a crucial role in environmental remediation. This study aims to conduct a bibliometric analysis of research papers on bacterial Mn(II) oxidation using CiteSpace, and to explore the research hotspots and developmental trends within this field between 2008 and 2023. A series of visualized knowledge map analyses were conducted with 469 screened SCI research papers regarding annual publication quantity, author groups and their countries and regions, journal categories, publishing institutions, and keywords. China, the USA, and Japan published the most significant number of research papers on the research of bacterial Mn(II) oxidation. Research hotspots of bacterial Mn(II) oxidation mainly focused on the species and distributions of Mn(II)-oxidizing bacteria, the influencing factors of Mn(II) oxidation, the mechanisms of Mn(II) oxidation, and their applications in environment. This bibliometric analysis provides a comprehensive visualized knowledge map to quickly understand the current advancements, research hotspots, and academic frontiers in bacterial Mn(II) oxidation.

摘要

锰(Mn)污染对动植物和人类健康构成严重威胁。微生物介导的锰(II)去除方法因其生长迅速、效率高和经济性而受到广泛关注。锰(II)氧化细菌可将有毒的可溶性锰(II)氧化为无毒的锰(III/IV)氧化物,后者可进一步参与其他重金属和有机污染物的转化,在环境修复中发挥关键作用。本研究旨在利用CiteSpace对关于细菌锰(II)氧化的研究论文进行文献计量分析,并探讨2008年至2023年该领域的研究热点和发展趋势。对469篇筛选出的SCI研究论文进行了一系列可视化知识图谱分析,内容涉及年度发表数量、作者群体及其所在国家和地区、期刊类别、发表机构和关键词。中国、美国和日本发表的关于细菌锰(II)氧化研究的论文数量最多。细菌锰(II)氧化的研究热点主要集中在锰(II)氧化细菌的种类和分布、锰(II)氧化的影响因素、锰(II)氧化的机制及其在环境中的应用。这项文献计量分析提供了一个全面的可视化知识图谱,以便快速了解细菌锰(II)氧化的当前进展、研究热点和学术前沿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f79/11356483/76f766786c33/microorganisms-12-01611-g001.jpg

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