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2000 年至 2019 年用于环境修复的零价铁颗粒研究的文献计量分析。

Bibliometric analysis of zerovalent iron particles research for environmental remediation from 2000 to 2019.

机构信息

Affiliation State Environmental Protection Key Laboratory of Simulation and Control of Groundwater Pollution, Chinese Research Academy of Environmental Sciences, Beijing, 100012, China.

Affiliation State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing, 100012, China.

出版信息

Environ Sci Pollut Res Int. 2021 Jul;28(26):34200-34210. doi: 10.1007/s11356-021-13847-0. Epub 2021 May 12.


DOI:10.1007/s11356-021-13847-0
PMID:33982253
Abstract

Zerovalent iron (ZVI) has been a major focus of research and has attracted great attention during the last 2 decades by international researchers because of its excellent pollutant removal performance and several other merits in environmental remediation. Based on Web of Science Core Collection data, we present a comprehensive bibliometric analysis of ZVI research from 2000 to 2019. We analyze 4472 publications assuming three stages of growth trend of annual publication totals. We find that "The Chemical Engineering Journal" has been the most productive journal; Noubactep C is identified as the most productive author; China has been the most active country in this field and the Chinese Academy of Science the most productive institution. The timeline of keywords shows seven distinct co-citation clusters. In addition, the top 38 keywords with strong citation bursts are also detected, suggesting that the innovation of green composite synthesis of ZVI and nanoscale ZVI and its efficient removal capacity might be the prevailing research directions in the future.

摘要

零价铁(ZVI)因其优异的污染物去除性能和在环境修复中的其他几个优点,成为过去 20 年来国际研究人员的主要关注点。基于 Web of Science 核心合集数据,我们对 2000 年至 2019 年的 ZVI 研究进行了全面的文献计量分析。我们分析了 4472 篇出版物,假设年度出版物总数的增长趋势有三个阶段。我们发现,《化学工程杂志》是最具生产力的期刊;Noubactep C 被确定为最具生产力的作者;中国是该领域最活跃的国家,中国科学院是最具生产力的机构。关键词时间线显示了七个不同的共被引聚类。此外,还检测到 38 个具有较强引文爆发的前导关键词,这表明 ZVI 的绿色复合材料合成及其纳米级 ZVI 的高效去除能力的创新可能是未来的主要研究方向。

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引用本文的文献

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Iron-fortified water: a new approach for reducing iron deficiency anemia in resource-constrained settings.

Sci Rep. 2023-8-21

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