Department of Environmental Science, College of Geography and Ocean Sciences, Yanbian University, Park Road 977, Yanji, 133002, Jilin Province, People's Republic of China.
Department of Chemistry, College of Science, Yanbian University, Park Road 977, Yanji, 133002, Jilin Province, People's Republic of China.
Environ Sci Pollut Res Int. 2023 Jul;30(35):83071-83092. doi: 10.1007/s11356-023-27992-1. Epub 2023 Jun 20.
Biochar has excellent physical and chemical properties such as porosity, high carbon content, high cation exchange capacity, and rich surface functional groups and has been widely used in environmental remediation. Over the past 20 years, although various reviews have described the application of biochar as an environmentally friendly multifunctional material in environmental remediation, no comprehensive summary and analysis of the research trends in this field exists. To promote the rapid and stable development of the field of biochar, the current state of research on biochar is clarified using the bibliometric method in this report, and potential development directions and challenges for the future are identified. All relevant biochar literature from 2003-2023 was collected from the Chinese National Knowledge Infrastructure and Web of Science Core Collection. A total of 6,119 published Chinese papers and 25,174 English papers were selected for the quantitative analysis. CiteSpace, VOSviewer, and Scimago graphics software was used to summarize the numbers of papers published over the years, as well as the countries, institutions, and authors that published the most articles. Secondly, using keyword co-occurrence and emergence analysis, the recognized research hotspots in different areas such as adsorbents, soil remediation, catalytic oxidation, supercapacitors, and "biochar-microbial" synergy were analyzed. Finally, the prospects and challenges of biochar were assessed to provide new perspectives for further promoting its development in technological, economic, environmental, and other aspects.
生物炭具有优异的物理和化学性质,如多孔性、高碳含量、高阳离子交换容量以及丰富的表面官能团,已被广泛应用于环境修复。在过去的 20 年中,尽管有各种评论描述了生物炭作为一种环保多功能材料在环境修复中的应用,但该领域的研究趋势尚未得到全面总结和分析。为了促进生物炭领域的快速稳定发展,本报告采用文献计量学方法阐明了生物炭的研究现状,并确定了未来的潜在发展方向和挑战。从中国国家知识基础设施和科睿唯安核心合集收集了 2003 年至 2023 年所有相关的生物炭文献,共选择了 6119 篇中文发表论文和 25174 篇英文发表论文进行定量分析。使用 CiteSpace、VOSviewer 和 Scimago 图形软件总结了多年来发表的论文数量,以及发表文章最多的国家、机构和作者。其次,利用关键词共现和突现分析,分析了吸附剂、土壤修复、催化氧化、超级电容器和“生物炭-微生物”协同作用等不同领域的公认研究热点。最后,评估了生物炭的前景和挑战,为进一步促进其在技术、经济、环境等方面的发展提供了新的视角。