Usman Bello , Haruna Adamu , Shafirah Samsuri , Hamza Ibrahim , Mohammad Qamar
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A co-country analysis identified \"China\" and \"India\" as top contributors, with 11,653 and 9298 citations, respectively, showcasing their strong research commitment to sustainable bioenergy. \"Chemical Reviews\" was tabled as the most-cited journal (4396 citations) and \"Yaakob et al., 2014\" as the most-cited author (449 citations) within the review period, underscoring the researchers’ active involvement in the field. While natural antioxidants have demonstrated superior antioxidative potential compared to their synthetic counterparts owing to greater solubility, lower cost, and higher potency at lower concentrations, their efficacy can be further enhanced through synergistic combinations. In contrast, the application of nanotechnology-based antioxidants in biodiesel stabilization remains in its infancy, presenting promising opportunities for further exploration. Finally, this study offers valuable insights into research trends, existing gaps, and future directions for researchers, policymakers, and industry stakeholders committed to enhancing biodiesel stability and advancing sustainable energy solutions.</div></div>","PeriodicalId":36919,"journal":{"name":"Results in Engineering","volume":"26 ","pages":"Article 105185"},"PeriodicalIF":6.0000,"publicationDate":"2025-05-02","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Improving biodiesel oxidative stability using antioxidants: An insight into the research trends and future prospects from a bibliometric approach\",\"authors\":\"Usman Bello , Haruna Adamu , Shafirah Samsuri , Hamza Ibrahim , Mohammad Qamar\",\"doi\":\"10.1016/j.rineng.2025.105185\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><div>This review highlights the current status and future directions for improving biodiesel oxidative stability using antioxidants as a crucial step toward ensuring its long-term sustainability and practical application. The bibliometric study collected and analyzed 1860 documents from the SCOPUS database published between 2014 and 2024. Keyword analysis highlights terms like \\\"antioxidants\\\" and \\\"feedstocks\\\", including fats and oils, plant seeds, and plant extracts, emphasizing the critical role of feedstock types as principal drivers for initiating oxidation reactions. A co-country analysis identified \\\"China\\\" and \\\"India\\\" as top contributors, with 11,653 and 9298 citations, respectively, showcasing their strong research commitment to sustainable bioenergy. \\\"Chemical Reviews\\\" was tabled as the most-cited journal (4396 citations) and \\\"Yaakob et al., 2014\\\" as the most-cited author (449 citations) within the review period, underscoring the researchers’ active involvement in the field. While natural antioxidants have demonstrated superior antioxidative potential compared to their synthetic counterparts owing to greater solubility, lower cost, and higher potency at lower concentrations, their efficacy can be further enhanced through synergistic combinations. In contrast, the application of nanotechnology-based antioxidants in biodiesel stabilization remains in its infancy, presenting promising opportunities for further exploration. 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引用次数: 0
摘要
本文综述了利用抗氧化剂提高生物柴油氧化稳定性的研究现状和未来发展方向,认为这是保证生物柴油长期可持续性和实际应用的重要一步。文献计量学研究收集并分析了2014年至2024年间发表的SCOPUS数据库中的1860篇文献。关键词分析强调了“抗氧化剂”和“原料”等术语,包括脂肪和油、植物种子和植物提取物,强调了原料类型作为引发氧化反应的主要驱动因素的关键作用。一项联合国家分析发现,“中国”和“印度”是贡献最多的国家,分别被引用11653次和9298次,显示出它们对可持续生物能源的强大研究承诺。“Chemical Reviews”被列为被引用次数最多的期刊(4396次),“Yaakob et al., 2014”被列为被引用次数最多的作者(449次),这表明研究人员在该领域的积极参与。由于天然抗氧化剂具有更高的溶解度、更低的成本和更低浓度下的更高效力,因此与合成抗氧化剂相比,天然抗氧化剂具有更好的抗氧化潜力,它们的功效可以通过协同组合进一步增强。相比之下,基于纳米技术的抗氧化剂在生物柴油稳定中的应用仍处于起步阶段,为进一步探索提供了有希望的机会。最后,本研究为致力于提高生物柴油稳定性和推进可持续能源解决方案的研究人员、政策制定者和行业利益相关者提供了有关研究趋势、现有差距和未来方向的宝贵见解。
Improving biodiesel oxidative stability using antioxidants: An insight into the research trends and future prospects from a bibliometric approach
This review highlights the current status and future directions for improving biodiesel oxidative stability using antioxidants as a crucial step toward ensuring its long-term sustainability and practical application. The bibliometric study collected and analyzed 1860 documents from the SCOPUS database published between 2014 and 2024. Keyword analysis highlights terms like "antioxidants" and "feedstocks", including fats and oils, plant seeds, and plant extracts, emphasizing the critical role of feedstock types as principal drivers for initiating oxidation reactions. A co-country analysis identified "China" and "India" as top contributors, with 11,653 and 9298 citations, respectively, showcasing their strong research commitment to sustainable bioenergy. "Chemical Reviews" was tabled as the most-cited journal (4396 citations) and "Yaakob et al., 2014" as the most-cited author (449 citations) within the review period, underscoring the researchers’ active involvement in the field. While natural antioxidants have demonstrated superior antioxidative potential compared to their synthetic counterparts owing to greater solubility, lower cost, and higher potency at lower concentrations, their efficacy can be further enhanced through synergistic combinations. In contrast, the application of nanotechnology-based antioxidants in biodiesel stabilization remains in its infancy, presenting promising opportunities for further exploration. Finally, this study offers valuable insights into research trends, existing gaps, and future directions for researchers, policymakers, and industry stakeholders committed to enhancing biodiesel stability and advancing sustainable energy solutions.