基于CiteSpace的湖泊脱氮研究态势分析

Research Trends in Lake's Nitrogen Removal Based on CiteSpace Software

  • 摘要: 为了解湖泊脱氮研究领域的现状和发展趋势,基于Web of Science (WoS)和中国知网(CNKI)数据库,结合文献计量学软件CiteSpace,对2000—2022年全球不同区域湖泊脱氮研究方向的发展动态、科研力量分布、研究热点以及发展趋势进行剖析。结果表明:①国内外湖泊脱氮研究领域发文量总体呈上升趋势,可分为机理探索(2000—2010年)和快速发展(2011—2022年)2个阶段。②中国发文量最高,在国际科研合作中处于较为中心地位;我国研究机构和学者在国内进行合作的成果较多,但仍需加强国际交流合作。③湖泊脱氮研究涉及湖泊生态学、环境化学、环境工程等多个学科领域。④研究焦点方面,国内外共同关注于浅水湖泊的脱氮治理和微生物介导的厌氧氨氧化和反硝化过程速率,而我国更加注重湖泊富营养化的协同治理。研究显示,在未来湖泊氮污染治理过程中,对不同区域湖泊脱氮能力与驱动因素的量化分析以及脱氮潜力挖掘是研究重点。运用氮稳定性同位素技术对不同生态类型的湖泊氮来源与转化去向进行示踪,研发新型生物脱氮技术以减少氮负荷、降低环境风险仍需进一步探索和验证。

     

    Abstract: In order to understand the status and development trends of lake nitrogen removal, the bibliometric software CiteSpace was used to analyze the researcher distribution, research status, hotspots, and development trends worldwide from 2000 to 2022 based on the Web of Science (WoS) and China National Knowledge Infrastructure (CNKI) database. The results show that: (1) The overall literature in the study field has been increasing and can be divided into two stages: mechanism exploration (2000-2010) and rapid development (2011-2022). (2) China has the highest number of publications and occupies a relatively central position in international scientific research cooperation. Many achievements in cooperation between domestic research institutions and scholars have been gained, however, international cooperation still needs to be strengthened. (3) The research on nitrogen removal involves multiple disciplines i.e., lake ecology, environmental chemistry, and environmental engineering. (4) In terms of research focus, both domestic and international attention has been paid to the nitrogen removal of shallow lakes and the microbial-mediated Anammox rate and denitrification rate, while China pays more attention to the synergistic treatment of lake eutrophication. The results of this study show that for future lake nitrogen pollution control, quantitative analysis of nitrogen removal capacity and driving factors in different lake areas and the exploration of nitrogen removal potential will be the research focus. The use of nitrogen stable isotope technology to track the sources and transformation of nitrogen in lakes of different ecological types, and the development of new biological nitrogen removal technologies to reduce nitrogen load and environmental risks still need to be further explored and verified.

     

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