Centre for Borneo Regionalism and Conservation, School of Built Environment, University of Technology Sarawak, No. 1 Jalan University, 96000, Sibu, Sarawak, Malaysia.
Center of Hydrogen Energy, Institute of Future Energy, Faculty of Chemical and Energy Engineering, Universiti Teknologi Malaysia, 81310, Skudai, Johor, Malaysia.
Environ Sci Pollut Res Int. 2024 Aug;31(38):50098-50125. doi: 10.1007/s11356-024-34550-w. Epub 2024 Aug 5.
Inadequate management and treatment of wastewater pose significant threats, including environmental pollution, degradation of water quality, depletion of global water resources, and detrimental effects on human well-being. Biogranulation technology has gained increasing traction for treating both domestic and industrial wastewater, garnering interest from researchers and industrial stakeholders alike. However, the literature lacks comprehensive bibliometric analyses that examine and illuminate research hotspots and trends in this field. This study aims to elucidate the global research trajectory of scientific output in biogranulation technology from 1992 to 2022. Utilizing data from the Scopus database, we conducted an extensive analysis, employing VOSviewer and the R-studio package to visualize and map connections and collaborations among authors, countries, and keywords. Our analysis revealed a total of 1703 journal articles published in English. Notably, China emerged as the leading country, Jin Rencun as the foremost author, Bioresource Technology as the dominant journal, and Environmental Science as the prominent subject area, with the Harbin Institute of Technology leading in institutional contributions. The most prominent author keyword identified through VOSviewer analysis was "aerobic granular sludge," with "sequencing batch reactor" emerging as the dominant research term. Furthermore, our examination using R Studio highlighted "wastewater treatment" and "sewage" as notable research terms within the field. These findings underscore a diverse research landscape encompassing fundamental aspects of granule formation, reactor design, and practical applications. This study offers valuable insights into biogranulation potential for efficient wastewater treatment and environmental remediation, contributing to a sustainable and cleaner future.
废水处理不当和管理不善会造成严重威胁,包括环境污染、水质恶化、全球水资源枯竭以及对人类福祉的不利影响。生物造粒技术在处理生活污水和工业废水方面得到了越来越多的关注,引起了研究人员和工业利益相关者的兴趣。然而,文献中缺乏全面的文献计量分析,无法考察和阐明该领域的研究热点和趋势。本研究旨在阐明 1992 年至 2022 年生物造粒技术的全球研究轨迹。我们利用 Scopus 数据库中的数据进行了广泛的分析,使用 VOSviewer 和 R-studio 包来可视化和绘制作者、国家和关键词之间的联系和合作。我们的分析显示,共发表了 1703 篇英文期刊文章。值得注意的是,中国是领先的国家,金仁村是最重要的作者,Bioresource Technology 是主要的期刊,环境科学是主要的学科领域,哈尔滨工业大学在机构贡献方面处于领先地位。通过 VOSviewer 分析确定的最突出的作者关键词是“好氧颗粒污泥”,“序批式反应器”是主要的研究术语。此外,我们使用 R Studio 的检查突出了“废水处理”和“污水”作为该领域的显著研究术语。这些发现强调了一个多样化的研究领域,包括颗粒形成、反应器设计和实际应用的基础方面。这项研究为高效废水处理和环境修复的生物造粒潜力提供了有价值的见解,有助于实现可持续和更清洁的未来。