文献计量学:过去十年至2022年海水淡化膜的发展分析

Hari Agung Triadi
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引用次数: 0

摘要

摘要:目的:本研究利用文献计量学方法对VOSviewer进行计算映射分析,考察化学颗粒脱盐膜研究的发展历程。方法:使用发表或消亡参考文献管理工具,查询Google Scholar数据库中的文章数据。通过使用短语“化学粒子脱盐膜”,搜索由文章的标题和摘要引导。有1024项被认为是相关的。该研究考虑的研究时期是最近十年的谷歌学者索引文章(2012年至2022年)。结果:海水淡化膜的论文数量呈上升趋势。在海水淡化膜的研究中,有5个集群和5个经常讨论的主题。这些是集群1:处理(链接数52,总链接强度99,精度65),集群2:复合(链接数34,总链接强度49,精度40),集群3:纳滤(链接数42,总链接强度92,精度52),集群4:脱盐性能(链接数39,总链接强度93,(链接数34,总链接强度75,精度38)。局限性:本研究的局限性主要集中在过去十年中使用文献计量学分析的海水淡化膜的发展。贡献:本研究为海水淡化膜的发展提供了一个解释基础。关键词:1。文献2。计算映射分析化学颗粒脱盐膜VOSviewer 5。出版或灭亡
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Bibliometrics: Analysis of the Development of Desalination Membranes in the Past Decade to 2022
Abstract: Purpose: This study uses a bibliometric method to computational mapping analysis with VOSviewer to look at how chemical particle desalination membrane research has evolved. Methodology: By using the publish or perish reference manager tool, the Google Scholar database was queried for the article data. By using the phrase "Chemistry Particle Desalination Membrane" the search is directed by the title and abstract of the article. There were 1024 items that were thought to be pertinent. The research period considered for the study is the most recent ten years of Google Scholar-indexed articles (2012 to 2022). Results: The findings showed an upward trend in the number of papers on desalination membranes. In desalination membrane research, there are 5 clusters and 5 topics that are frequently discussed. These are Cluster 1: Treatment (number of links 52, total link strength 99, accurness 65), Cluster 2: Composite (number of links 34, total link strength 49, accurness 40), Cluster 3: Nanofiltration (number of links 42, total link strength 92, accurness 52), Cluster 4: Desalination performance (number of links 39, total link strength 93, (number of links 34, total link strength 75, accuracy 38). Limitations: The limitation of this research wass focused on the development of desalination membranes in the last 10 years using bibliometric analysis. Contribution: This study can provide an explanation that serves as a foundation for knowledge about the development of desalination membrane. Keywords: 1. Bibliometric 2. Computational mapping analysis 3. Chemistry Particle Desalination Membrane 4. VOSviewer 5. publish or perish
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