基于citespace的电解锰渣无害化与资源化处理现状以及发展趋势分析
投稿时间:2022-02-07  修订日期:2022-09-25  点此下载全文
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鄢永庚 贵州大学 5500000
王跃虎 贵州大学 550000
赵健 贵州大学 
林晓莉 贵州大学 
陈梦瑜 贵州大学 
郭文珮 贵州大学 
刘婷 贵州大学 
刘璇 贵州大学 
基金项目:贵州大学引进人才基金项目
中文摘要:近年来电解锰行业迅猛发展,产生了大量的电解锰渣。如果长期堆积,其渗滤液中含有的锰、坤、氨氮以及其他有毒有害物质会对周围环境各个圈层造成严重污染,威胁到周边居民的生命安全。本文基于Web of Science Core Collection数据库对2008年1月1日—2021年10月27日期间发表的电解锰渣处理处置相关文献进行了分析检索,剔除不相关的文献,总共得到113篇学术论文。并借助CiteSpace.5.8.R3进行文献计量学可视化分析,绘制知识图谱,总结分析了自2008年以来电解锰渣处理处置的研究现状以及发展趋势。结果发现,电解锰渣的处理处置的现状大致可分为资源化以及无害化两个方向。资源化处理处置方向中又以建材行业对电解锰渣的消耗量最大,经济、技术可行性较高,具有广阔的应用前景,也是电解锰渣处理处置行业未来的发展趋势。
中文关键词:电解锰渣  CiteSpace  可视化分析  建筑材料  氨氮
 
Analysis of the status quo and development trend of harmless and resource treatment of electrolytic manganese slag based on citespace
Abstract:In recent years the electrolytic manganese industry develops rapidly and produces a lot of electrolytic manganese slag. If accumulated for a long time, manganese, kun, ammonia nitrogen and other toxic and harmful substances contained in the leachate will cause serious pollution to the surrounding environment, threatening the life safety of surrounding residents. Based on the Database of Web of Science Core Collection, this paper analyzed and retrieved literatures related to the treatment and disposal of electrolytic manganese slag published from January 1, 2008 to October 27, 2021. A total of 113 academic papers were obtained after excluding irrelevant literatures. CiteSpace.5.8.R3 was used for literature metrology visualization analysis, knowledge map was drawn, and the research status and development trend of electrolytic manganese slag treatment and disposal since 2008 were summarized and analyzed. The results show that the treatment and disposal of electrolytic manganese slag can be roughly divided into two directions: resource recovery and harmless treatment. In the direction of resource treatment and disposal, building materials industry consumes the largest amount of electrolytic manganese slag, which has high economic and technical feasibility and broad application prospects. It is also the development trend of electrolytic manganese slag treatment and disposal industry in the future.
keywords:electrolytic manganese residue  CiteSpace  visual analyze  building materials  ammonia nitrogen
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