首页|期刊导航|环境保护科学|硫自养反硝化水处理技术研究现状及趋势分析

硫自养反硝化水处理技术研究现状及趋势分析OA

Sulfur autotrophic denitrification water treatment technology research status and trend analysis

中文摘要英文摘要

基于 Web of Science核心合集数据库,利用 Web of Science在线统计功能和 CiteSpace软件,对 2011-2023年有关硫自养反硝化水处理技术的文献进行定量分析.结果表明:2011-2023年,中国是发文量最大的国家,哈尔滨工业大学是发文量最高的机构,哈尔滨工业大学的王爱杰是发文量最高的专家,Bioresource Technology是发文量最多的期刊,"Electron donors for autotrophic denitrification"是被引频次最高的论文;硫自养反硝化水处理技术当前研究前沿侧重于硫自养反硝化工艺与高效互补工艺的耦合,研究热点主要有电子供体、微生物群落、工艺参数和耦合工艺.这些分析结果凸显了硫自养反硝化水处理技术研究的必要性,为硫自养反硝化水处理技术研究工作提供了参考和借鉴.

Based on the Web of Science Core Collection database,the online statistical tools of Web of Science and CiteSpace software were adopted to conduct a quantitative analysis of literature on sulfur autotrophic denitrification for water treatment published from 2011 to 2023.The results showed that during 2011 to 2023,China was the country with the largest number of publications.Harbin Institute of Technology ranked first among all research institutions in publication output.Wang Aijie from Harbin Institute of Technology was the most productive scholar,and Bioresource Technology was the journal with the highest publication volume.The highest citation frequency was recorded for"Electron donors for autotrophic denitrification".Current research frontiers of sulfur autotrophic denitrification water treatment technology were focused on the in-depth coupling of this process with efficient complementary technologies.The main research hotspots included electron donors,microbial communities,process parameters and coupled processes.These analytical results highlighted the necessity of relevant research and provided references for further studies on sulfur autotrophic denitrification water treatment technology.

吴瑞;刘佳龙;张弢;钱书杰;刘雪瑜;魏东洋

中国环境科学研究院水生态环境研究所,北京 100012||生态环境部环境发展中心,北京 100029||兰州交通大学环境与市政工程学院,兰州 730070中国环境科学研究院水生态环境研究所,北京 100012||生态环境部环境发展中心,北京 100029化学工业出版社有限公司,北京 100011生态环境部环境发展中心,北京 100029中国环境科学研究院水生态环境研究所,北京 100012生态环境部环境发展中心,北京 100029

资源环境

硫自养反硝化文献计量法研究现状趋势分析

sulfur autotrophic denitrificationbibliometricsresearch statustrend analysis

《环境保护科学》 2026 (3)

34-43,10

黄河流域生态保护和高质量发展联合研究项目(2022-YRUC-01-050203-03)

10.16803/j.cnki.issn.1004-6216.202503022

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