Nurrochman Andrieanto, Junianto Endro, Korda Akhmad Ardian, Prawara Budi, Basuki Eddy Agus
Metallurgical Engineering Research Group, Faculty of Mining and Petroleum Engineering, Institut Teknologi Bandung Jl. Ganesha, 10 Bandung 40132 Jawa Barat Indonesia.
Research Center for Advanced Material, National Research and Innovation Agency (BRIN) Serpong 15314 Indonesia
RSC Adv. 2023 Oct 13;13(43):29904-29922. doi: 10.1039/d3ra04628a. eCollection 2023 Oct 11.
Hot corrosion has attracted researchers due to its complexity of mechanisms leading to a critical challenge for energy efficiency advancement. Literature on hot corrosion spans a wide range of discussions in materials, including metals or non-metals and operating environmental conditions. Hence it was difficult to overshadow the current status and future trends of hot corrosion research. Here we pioneered a bibliometric analysis to identify the research hotspot and possible anticipated future direction of the hot corrosion study. The results showed that at least six research hotspots can be derived after carefully classifying hot corrosion research literature based on their discussion and key findings. Some hotspots were inactive in recent years and brought complications in research direction prediction. Nevertheless, several future trends of hot corrosion research are suggested. This study provides beneficial ideas in enlightening hot corrosion research development.
热腐蚀因其机制复杂,对提高能源效率构成严峻挑战,从而吸引了研究人员。关于热腐蚀的文献涵盖了材料领域的广泛讨论,包括金属或非金属以及运行环境条件。因此,很难掩盖热腐蚀研究的现状和未来趋势。在此,我们率先进行了文献计量分析,以确定热腐蚀研究的热点和可能的未来预期方向。结果表明,在根据热腐蚀研究文献的讨论内容和关键发现进行仔细分类后,至少可以得出六个研究热点。一些热点近年来活跃度不高,给研究方向预测带来了复杂性。尽管如此,还是提出了热腐蚀研究的几个未来趋势。本研究为启发热腐蚀研究发展提供了有益思路。