Ramesh Vinayagam , Thivaharan Varadavenkatesan , Raja Selvaraj
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Using VOSviewer and Bibliometrix, the study presents a comprehensive visual mapping of publication growth trends, leading countries, institutions, authors, and journals. China, the USA, and India dominate the research output, with significant institutional contributions from Hunan University and Anhui Agricultural University. “Desalination and Water Treatment” and “Bioresource Technology” are identified as prominent journals, with the latter having 2236 citations. Keyword co-occurrence and thematic evolution analyses highlight trending materials like magnetic biochar and metal-organic frameworks. Additionally, it highlighted underexplored areas, including computational modeling, Artificial Intelligence/Machine Learning integration, and continuous adsorption. 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引用次数: 0
摘要
四环素是一种常用的抗生素,由于其在水生生态系统中的广泛使用和持续存在,已成为一种重要的环境污染物。它在水体中的存在带来了生态风险,并引起了人们对抗生素耐药性的日益关注。在各种处理技术中,吸附作为一种经济有效的方法从污染的水中去除四环素,已经得到了突出的地位。本文对Web of Science Core Collection中2015 - 2025年间发表的567篇论文进行了文献计量分析,揭示了四环素吸附领域的科学趋势、影响力贡献者、研究热点和新出现的空白。使用VOSviewer和Bibliometrix,该研究展示了出版增长趋势、主要国家、机构、作者和期刊的全面可视化地图。中国、美国和印度的研究产出占主导地位,湖南大学和安徽农业大学的机构贡献显著。《海水淡化与水处理》和《生物资源技术》被认定为优秀期刊,后者被引用2236次。关键词共现和主题演化分析突出了磁性生物炭和金属有机框架等趋势材料。此外,它还强调了未开发的领域,包括计算建模、人工智能/机器学习集成和连续吸附。研究结果对目前的研究现状提供了一个全面的了解,并为推进四环素吸附对环境可持续性的未来研究提供了战略方向。
Tetracycline adsorption research (2015–2025): A bibliometric analysis of trends, challenges, and future directions
Tetracycline is a commonly used antibiotic that has emerged as a significant environmental contaminant due to its widespread use and persistence in aquatic ecosystems. Its presence in water bodies poses ecological risks and contributes to the growing concern over antibiotic resistance. Among the various treatment technologies, adsorption has gained prominence as a cost-effective and efficient approach for removing tetracycline from contaminated water. This bibliometric review analyzes 567 articles published between 2015 and 2025 retrieved from the Web of Science Core Collection to uncover the scientific trends, influential contributors, research hotspots, and emerging gaps in the field of tetracycline adsorption. Using VOSviewer and Bibliometrix, the study presents a comprehensive visual mapping of publication growth trends, leading countries, institutions, authors, and journals. China, the USA, and India dominate the research output, with significant institutional contributions from Hunan University and Anhui Agricultural University. “Desalination and Water Treatment” and “Bioresource Technology” are identified as prominent journals, with the latter having 2236 citations. Keyword co-occurrence and thematic evolution analyses highlight trending materials like magnetic biochar and metal-organic frameworks. Additionally, it highlighted underexplored areas, including computational modeling, Artificial Intelligence/Machine Learning integration, and continuous adsorption. The findings offer a holistic understanding of the current research landscape and provide strategic directions for advancing future studies in tetracycline adsorption for environmental sustainability.