Khan Kaffayatullah, Ahmad Waqas, Amin Muhammad Nasir, Nazar Sohaib
Department of Civil and Environmental Engineering, College of Engineering, King Faisal University, Al-Ahsa 31982, Saudi Arabia.
Department of Civil Engineering, COMSATS University Islamabad, Abbottabad 22060, Pakistan.
Polymers (Basel). 2022 Sep 5;14(17):3676. doi: 10.3390/polym14173676.
A scientometric-based assessment of the literature on geopolymers was conducted in this study to determine its critical aspects. Typical review studies are restricted in their capability to link disparate segments of the literature in a systematic and exact way. Knowledge mapping, co-citation, and co-occurrence are very difficult components of creative research. This study adopted an advanced strategy of data mining, data processing and analysis, visualization and presentation, and interpretation of the bibliographic data on geopolymers. The Scopus database was used to search for and retrieve the data needed to complete the study's objectives. The relevant sources of publications, keyword assessment, productive authors based on publications and citations, top papers based on citations received, and areas actively engaged in the research of geopolymers are recognized during the data assessment. The VOSviewer (VOS: visualization of similarities) software application was employed to analyze the literature data comprising citation, bibliographic, abstract, keywords, funding, and other information from 7468 relevant publications. In addition, the applications and restrictions associated with the use of geopolymers in the construction sector are discussed, as well as possible solutions to overcome these restrictions. The scientometric analysis revealed that the leading publication source (journal) in terms of articles and citations is "Construction and building materials"; the mostly employed keywords are geopolymer, fly ash, and compressive strength; and the top active and contributing countries based on publications are China, India, and Australia. Because of the quantitative and graphical representation of participating nations and researchers, this study can help academics to create collaborative efforts and exchange creative ideas and approaches. In addition, this study concluded that the large-scale usage of geopolymer concrete is constrained by factors such as curing regime, activator solution scarcity and expense, efflorescence, and alkali-silica reaction. However, embracing the potential solutions outlined in this study might assist in boosting the building industry's adoption of geopolymer concrete.
本研究对地质聚合物文献进行了基于科学计量学的评估,以确定其关键方面。典型的综述研究在以系统和精确的方式关联文献的不同部分的能力方面受到限制。知识图谱、共被引和共现是创造性研究中非常困难的组成部分。本研究采用了一种先进的策略,包括数据挖掘、数据处理与分析、可视化与呈现以及地质聚合物文献数据的解释。使用Scopus数据库搜索和检索完成研究目标所需的数据。在数据评估过程中,识别出相关的出版物来源、关键词评估、基于出版物和引用的高产作者、基于收到的引用的顶级论文以及积极参与地质聚合物研究的领域。使用VOSviewer(VOS:相似性可视化)软件应用程序来分析包含来自7468篇相关出版物的引用、书目、摘要、关键词、资金和其他信息的文献数据。此外,还讨论了地质聚合物在建筑领域使用的应用和限制,以及克服这些限制的可能解决方案。科学计量分析表明,在文章和引用方面领先的出版物来源(期刊)是《建筑与建材》;最常用的关键词是地质聚合物、粉煤灰和抗压强度;基于出版物的顶级活跃和贡献国家是中国、印度和澳大利亚。由于参与国家和研究人员的定量和图形表示,本研究可以帮助学者开展合作,交流创造性的想法和方法。此外,本研究得出结论,地质聚合物混凝土的大规模使用受到诸如养护制度、活化剂溶液稀缺和成本、泛碱和碱 - 硅反应等因素的限制。然而,采用本研究中概述的潜在解决方案可能有助于推动建筑行业对地质聚合物混凝土的采用。