4.7 Article

Bibliometric analysis of global research on white rot fungi biotechnology for environmental application

期刊

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
卷 29, 期 1, 页码 1491-1507

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-021-15787-1

关键词

Bibliometric analysis; White rot fungi; Environmental applications; Web of Science Core Collection; Collaborative relationship; Visualization

资金

  1. Natural Science Foundation of Heilongjiang Provincial of China [LH2019D002]

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This study conducted a bibliometric analysis on the research progress of white rot fungi (WRFs) biotechnology in environmental pollution control, revealing China and the USA as the most active countries in this field and identifying important research directions and hotspots. The analysis also showed that most authors tend to cooperate within small groups.
In recent years, white rot fungi (WRFs) have received tremendous attention as a biotechnological tool for environmental pollution control. In order to systematically and comprehensively describe the progress, trends, and hotspots of WRF biotechnology in the field of environmental pollution control, the 3967 related publications from 2003 to 2020 were collected from Web of Science Core Collection database, and the bibliometric characteristics including publication output, country, institution, journal, author, citation frequency, h-index, and research focus were evaluated by using Excel 2007, CiteSpace V, and VOSviewer. The results indicated that the number of research publications increased rapidly before 2009, but after that, the number of publications fluctuated in a certain range. China and USA were the most productive countries and the most active country in international cooperation. In this field, most authors tend to cooperate within a small group. The journal and subject category with the largest number of publications are International Biodeterioration & Biodegradation and Biotechnology Applied Microbiology, respectively. The analysis of high-frequency keywords revealed that laccase, biodegradation, decolorization, and Phanerochaete chrysosporium were the most cited terms among all publications. The pretreatment of biomass waste, decolorization of dye wastewater, and bioremediation of polluted environment are the key research directions of WRF biotechnology. Finally, the frontier topics and active authors in this research field were identified using burst detection. We believe that this bibliometric study provides a comprehensive and systematic overview and promoted the future cooperative research and knowledge exchange in this field of WRF biotechnology for environmental applications.

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