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Application and development of zero-valent iron (ZVI)-based materials for environmental remediation: A scientometric and visualization analysis

期刊

ENVIRONMENTAL RESEARCH
卷 241, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2023.117659

关键词

Zero-valent iron; Scientometric analysis; CiteSpace; Knowledge mapping; Environmental remediation

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This study conducted a bibliometric analysis to comprehensively explore the research hotspots and trends of zero-valent iron (ZVI)-based materials in environmental remediation. The results showed that China is the major contributor in terms of publications, while the USA has the highest academic influence. The primary research topics include reductive dechlorination, sulfate radical, and arsenic removal. However, the environmental impact and toxicity of ZVI-based materials have not received sufficient attention.
Zero-valent iron (ZVI)-based materials are among the most widely used engineered particles in the field of environmental remediation. To provide a comprehensive overview of the status and trend of the research on them, this study conducted a quantitative and visual analysis of 6296 relevant publications obtained from Web of Science between 1994 and 2022 using CiteSpace software. By using the bibliometric method, this work systematically analyzed the knowledge structure, research hotspots and trends of ZVI-based materials in this field. The results show that the research on ZVI-based materials in this field developed rapidly over the past 28 years. China is the greatest contributor with the most published articles and collaborations. Still, the USA has the most academic influence with the highest average citations per article. Chinese Academy of Sciences and Tongji University are the primary establishments that produced the greatest number of publications and had the highest h-index. Keyword cluster analysis indicates that the primary research topics are related to reductive dechlorination, sulfate radical, arsenic removal, graphene oxide, porous media, peroxymonosulfate, groundwater remediation, and permeable reactive barrier. Meanwhile, keyword burst analysis reveals that the primary research hotspots and frontiers of ZVI focus on its modification, the refractory and emerging contaminants treatment, persulfate activation, and electron transfer. However, no keywords or topics related to the environmental impact and toxicity of ZVI-based materials are available in the keyword clustering and burst analysis results, indicating this direction deserves more attention in future research. Through a comprehensive and indepth bibliometric analysis, this paper provides new insight into the research hotspots and development trends of the research on ZVI-based materials in environmental remediation.

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