基于纳米技术的生物柴油:全面回顾生物柴油的生产和在柴油发动机中用作柴油替代品的情况

Thanh Tuan Le, Minh Ho Tran, Quang Chien Nguyen, Huu Cuong Le, Van Quy Nguyen, Dao Nam Cao, Prabhu Paramasivam
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引用次数: 0

摘要

作为化石燃料的可持续替代品,生物柴油改变了能源领域的游戏规则。鉴于气候变化和环境可持续发展问题日益突出,生物柴油作为一种可持续的清洁燃料来源,其重要性不言而喻。然而,传统的生物柴油生产方法经常会遇到转化效率不足和燃料特性不合适等问题,阻碍了生物柴油的广泛应用。本综述论文探讨了纳米技术在规避这些局限性以及彻底改变生物柴油消费和生产方面的革命性潜力。纳米技术可以在原子和分子水平上改变物质,为提高生物柴油产量和发动机效率提供了新的可能性。利用纳米催化剂、纳米乳化工艺和纳米封装程序,研究人员在提高生物柴油的质量(如稳定性、燃烧效率和粘度)方面取得了重大进展。本文通过对当前文献和研究数据的综合分析,阐明了纳米技术在推动生物柴油技术发展中的关键作用。通过阐明纳米生物柴油制造和消费领域的最新进展、挑战和未来潜在成果,本综述希望为该领域不断增长的知识库添砖加瓦,并激发更多创新。总之,通过应用纳米技术,实现可持续能源未来、促进经济增长和减少对环境的影响是大有希望的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanotechnology-based biodiesel: A comprehensive review on production, and utilization in diesel engine as a substitute of diesel fuel
As a sustainable replacement for fossil fuels, biodiesel is a game-changer in the energy sector. There is no strategy to minimize biodiesel's significance as a sustainable, clean fuel source in light of the increasing climate change and environmental sustainability concerns. Nevertheless, conventional biodiesel production methods often run into problems like inadequate conversion efficiency and inappropriate fuel properties, which impede their broad adoption. The revolutionary potential of nanotechnology to circumvent these limitations and revolutionize biodiesel consumption and production is explored in this review paper. There are new possibilities for improving biodiesel output and engine efficiency, thanks to nanotechnology, which can alter matter at the atomic and molecular levels. Using nano-catalysts, nano-emulsification processes, and nano-encapsulation procedures, researchers have made significant advances in improving biodiesel qualities such as stability, combustion efficiency, and viscosity. Through a comprehensive analysis of current literature and research data, this article elucidates the crucial role of nanotechnology in advancing biodiesel technology. By shedding light on the most current advancements, challenges, and potential future outcomes in nano-based biodiesel manufacturing and consumption, this review hopes to add to the growing corpus of knowledge in the field and inspire additional innovation. In conclusion, there is great hope for a sustainable energy future, increased economic growth, and reduced environmental impacts through the application of nanotechnology.  
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