掺纳米添加剂的柴油-生物柴油作为柴油机燃料的研究进展

Q2 Engineering
A. Sule, Z. A. Latiff, M. A. Abbas, Ibham Veza, A. C. Opia
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引用次数: 8

摘要

由于世界人口的增加导致化石燃料的燃烧量增加,全球气体排放量迅速增加,这导致了更多的制造业和“道路车辆”用户。研究人员将全球变暖的原因归因于气体排放,这些气体排放相应地导致了具有毁灭性影响的气候变化。目前,气候变化是一个普遍问题,世界领导人的任务是减少直接影响生态系统和气候变化的气体排放。生物柴油作为化石燃料的替代品,面临着许多挑战,为了解决生物柴油的一些局限性,研究人员将生物柴油以不同比例与柴油混合。因此,本文集中回顾了研究人员最近使用添加剂,特别是纳米添加剂来改变和提高柴油生物柴油燃料的预期特性;还考察了纳米添加剂的合成;挑战和取得的进展。本文从排放、油耗、制动热效率和发动机功率等方面进一步分析、回顾和比较了纳米添加剂的最新使用结果,确定了各种纳米添加剂的优缺点,最后对纳米添加剂在柴油机中与柴油燃料的使用提出了结论性意见。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Advances in Diesel-Biodiesel Blended with Nano-Additive as Fuel in Diesel Engines: A Detailed Review
Global emission of gases has increased rapidly due to higher combustion of fossil fuels arising from increasing world population which has led to a greater number of manufacturing industries and ‘on-road vehicle (ORV)’ users. Researchers have attributed cause of global warming to gases emissions which correspondingly lead to climate change with devastating repercussions. Currently, climate change is a general issue and world leaders have been tasked to cut down emissions of gases that directly affect the ecosystem and influence climate change. Biodiesel which is an alternative to fossil fuels face many challenges and to tackle some limitations with biodiesel researchers blends biodiesels in various proportional ratio to diesel fuel. This paper, therefore, concentrates on reviewing the use of additives specifically nano-additives by researchers recently to alter and boost desired characteristics in diesel-biodiesel fuel; it also examines the synthesis of nano-additives; challenges, and advances made. This paper further analysed, reviewed, and compared recent results from nano-additive use with respect to emissions, fuel consumption, brake thermal efficiency, and engine power, establishes the merits and demerits of diverse nano-additives, and finally presents a conclusive opinion on nano-additive usage with diesel fuels in diesel engines.
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来源期刊
Automotive Experiences
Automotive Experiences Engineering-Automotive Engineering
CiteScore
3.00
自引率
0.00%
发文量
14
审稿时长
12 weeks
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