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A global trend of Fenton-based AOPs focused on wastewater treatment: a bibliometric and visualization analysis

机译:基于FENTON的AOP的全球趋势,重点是废水处理:学真管计和可视化分析

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摘要

This study sought to detect the global characteristics and developments of Fenton-based advanced oxidationprocesses (AOPs) focused on wastewater treatment. Using bibliometric and visualization analysis via VOSviwer,CiteSpace, and HistCite software, it investigated and analyzed different aspects, including growth trends,country, journal, category, and keyword analysis, as well as citation-burst detection of references to 5,940records ranging from 1990 to 2019 in the Web of Science Core Collection. It was concluded that wastewatersin the textile industries, pharmaceutical industries, phenol compounds, and landfill leachates were currentlyand would continue to be the most focused industrial effluents that can be treated efficiently by applyingFenton-based AOPs. The study also conducted an in-depth analysis based on four clusters through the 100most-occurring keywords, containing textile wastewater, catalyst, photo-Fenton, and electro-Fenton, identifyingthe four most studied research topics of Fenton-based AOPs. Studies about innovative (nano) catalysts, electrocatalytic,and photocatalytic materials can provide new degradation possibilities and overcome the Fentonprocess’s drawbacks. The results of this bibliometric analysis can be helpful information for researchers andindustry practitioners.
机译:本研究试图检测基于FENTON的先进氧化的全球特征和发展过程(AOP)重点是废水处理。通过Vosviwer使用Bibliometric和可视化分析,CitEsace和Histcite软件,它调查并分析了不同的方面,包括增长趋势,国家,期刊,类别和关键词分析,以及引用引用的引用突发检测为5,940从1990年到2019年在科学核心系列网络中的记录范围。结论是废水器在纺织工业,制药行业,酚化合物和垃圾渗滤液目前是并将继续成为最受关注的工业污水,可以通过申请有效地进行治疗基于芬顿的AOPS。该研究还通过100的四个集群进行了深入的分析最大的关键词,含有纺织废水,催化剂,光芬顿和电芬顿,识别基于FENTON的AOPS的四个最多研究的研究主题。关于创新(纳米)催化剂,电催化的研究光催化材料可以提供新的降解可能性并克服Fenton过程的缺点。这张学者分析的结果可以有助于研究人员和行业从业者。

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