Department of Municipal and Environmental Engineering, Faculty of Water Resources and Hydroelectric Engineering, Xi'an University of Technology, Xi'an, 710048, PR China; State Key Laboratory of Eco-Hydraulics in Northwest Arid Region, Xi'an University of Technology, Xi'an, 710048, PR China.
Department of Municipal and Environmental Engineering, Faculty of Water Resources and Hydroelectric Engineering, Xi'an University of Technology, Xi'an, 710048, PR China; State Key Laboratory of Eco-Hydraulics in Northwest Arid Region, Xi'an University of Technology, Xi'an, 710048, PR China.
Chemosphere. 2021 Jan;262:128366. doi: 10.1016/j.chemosphere.2020.128366. Epub 2020 Sep 22.
The embedding microbial fuel cell (MFC) into constructed wetlands (CW) to form CW-MFC bears the potential to obtain bioelectricity and a clean environment. In this study, a bibliometric analysis using VOSviewer based on Web of Science data was conducted to provide an overview by tracing the development footprint of this technology. The countries, institutions, authors, key terms, and keywords were tracked and corresponding mapping was generated. From 2012 to September 2020, 442 authors from 129 organizations in 26 countries published 135 publications in 42 journals with total citation of 3139 times were found. The key terms analysis showed four clusters: bioelectricity generation performance, mechanism study, refractory pollutants removal, and enhanced conventional contaminants removal. Further research themes include exploring the biochemical properties of electrochemically active bacteria, emerging contaminants removal, effective bioelectricity harvest and the use, and biosensor development as well as scaling-up for real field application. The bibliometric results provide valuable references and information on potential research directions for future studies.
将嵌入式微生物燃料电池(MFC)应用于人工湿地(CW)中形成 CW-MFC,有望获得生物电能和清洁环境。本研究利用基于 Web of Science 数据的 VOSviewer 进行了文献计量分析,通过追踪该技术的发展足迹提供了一个概述。跟踪了国家、机构、作者、关键词和主题词,并生成了相应的映射。从 2012 年到 2020 年 9 月,来自 26 个国家的 129 个机构的 442 位作者在 42 种期刊上发表了 135 篇文章,总被引次数为 3139 次。关键词分析显示出四个聚类:生物电能生成性能、机制研究、难处理污染物去除和增强常规污染物去除。进一步的研究主题包括探索电化学活性细菌的生化特性、新兴污染物去除、有效生物电能的收获和利用以及生物传感器的开发以及实际现场应用的规模化。该文献计量结果为未来的研究提供了有价值的参考和潜在研究方向的信息。