Department of Chemical Engineering, University of Bath, Bath, BA2 7AY, UK; Water Innovation and Research Centre (WIRC), University of Bath, Bath, BA2 7AY, UK.
Department of Chemical Engineering, University of Bath, Bath, BA2 7AY, UK.
Chemosphere. 2021 Dec;284:131267. doi: 10.1016/j.chemosphere.2021.131267. Epub 2021 Jun 21.
Municipal wastewaters are abundant low-strength streams that require adequate treatment and disposal to ensure public and environmental health. This study aims to provide a comprehensive summary of municipal wastewater research in Europe in the 2010s in the form of bibliometric analysis. The work was based on the Science Citation Index Expanded (Web of Science) and carried out using the R-package bibliometrix for bibliometric data analysis and the software VOSviewer for science mapping. Analysing a dataset of 5645 publications, we identified the most influential journals, countries, authors, institutions, and publications, and mapped the co-authorship and keyword co-occurrence networks. Spain had produced the most publications while Switzerland had the highest average citations per publication. China was the most collaborative country from outside of Europe. Analysis of the most cited articles revealed the popularity of micropollutant removal in European municipal wastewater research. The keyword analysis visualized a paradigm shift from pollutant removal towards resource recovery and circular economy. We found that current challenges of resource recovery from municipal wastewater come from both technical and non-technical (e.g., environmental, economic, and social) aspects. We also discussed future research opportunities that can tackle these challenges.
城市污水是丰富的低强度水流,需要进行适当的处理和处置,以确保公众和环境健康。本研究旨在通过文献计量分析的形式,全面总结 21 世纪 10 年代欧洲的城市废水研究。该工作基于科学引文索引扩展版(Web of Science),使用 R 包 bibliometrix 进行文献计量数据分析,使用软件 VOSviewer 进行科学图谱绘制。通过分析一个包含 5645 篇出版物的数据集,我们确定了最有影响力的期刊、国家、作者、机构和出版物,并绘制了合著和关键词共现网络。西班牙发表的论文最多,而瑞士每篇论文的平均引用率最高。中国是欧洲以外合作最密切的国家。对被引频次最高的文章的分析揭示了欧洲城市污水研究中去除微污染物的流行趋势。关键词分析可视化了从污染物去除到资源回收和循环经济的范式转变。我们发现,当前从城市废水中回收资源的挑战来自技术和非技术(如环境、经济和社会)方面。我们还讨论了可以应对这些挑战的未来研究机会。