Hotspots and trends of biological water treatment based on bibliometric review and patents analysis

文献计量学 重新使用 污水处理 污染物 计算机科学 环境科学 工程类 环境工程 废物管理 图书馆学 生物 生态学
作者
Lili Jin,Xiangzhou Sun,Hongqiang Ren,Hui Huang
出处
期刊:Journal of Environmental Sciences-china [Elsevier BV]
卷期号:125: 774-785 被引量:58
标识
DOI:10.1016/j.jes.2022.03.037
摘要

• 30023 articles and 50326 patents were evaluated by text mining and bibliometric analysis. • Research hotspots of SCI papers were identified by knowledge mapping. • Activated sludge and anaerobic-aerobic combined processes were the mainstream technologies. • Technology evolution path was elucidated in three stages based on the citation network analysis. • Future research and technology innovation directions were proposed. In order to reveal the hotspots and trends of biological water treatment from the perspectives of scientific and technological innovation, both of the bibliometric review and patents analysis were performed in this study. The Web of Science Core Collection database and Derwent Innovation Index database recorded 30023 SCI papers and 50326 patents, respectively were analyzed via information visualization technology. The results showed that China ranked the first in both papers and patents, while the United States and Japan had advantages in papers and patents, respectively. It was concluded through literature metrology analysis that microbial population characteristics, biodegradation mechanism, toxicity analysis, nitrogen and phosphorus removal and biological treatment of micro-polluted wastewater were the research hotspots of SCI papers. Activated sludge process and anaerobic-aerobic combined process were the two mainstream technologies on the basis of patent technology classification analysis. Technology evolution path of biological water treatment was also elucidated in three stages based on the citation network analysis. Furthermore, the future directions including research on the law of interaction and regulation of biological phases and pollutants and the technology innovations towards the targeted biotransformation or selective biodegradation of pollutants and resource reuse of wastewater were prospected.
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