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在采用高绝热活塞顶涂层的火花点火发动机中燃烧柠檬皮油/汽油混合物。

The combustion of lemon peel oil/gasoline blends in spark ignition engine with high-insulation piston crown coating.

机构信息

Department of Mechanical Engineering, Annamalai University, Chidambaram, Tamil Nadu, India.

Department of Mechanical Engineering, Faculty of Engineering and Natural Sciences, Istinye University, Istanbul, Turkey.

出版信息

Sci Rep. 2024 Nov 20;14(1):28740. doi: 10.1038/s41598-024-79457-1.

Abstract

This study explored the recovery of oil from lemon peel biomass and then tested it in a spark ignition as a substitute for gasoline. The study adopted the micro-arc oxidation coating technique, intending to improve the engine performance of the lemon peel oil-gasoline blends. The oil was recovered from discarded lemon peel biomass using steam distillation and then tested in the engine as a fuel by blending it with gasoline at volume ratios of 10, 20, and 30%. An endoscopic visualization approach was employed in this research work to assess the combustion initiation and flame characteristics of gasoline and lemon peel oil blends under different test conditions. Compared to gasoline and blends comprising 20 and 30% lemon peel oil, the 10% lemon peel oil mix produced higher thermal efficiency and lower emissions. The optical analysis demonstrated that premixed combustion with the 10% blend was found to be the highest, resulting in improved combustion and subsequently increased cylinder pressure. To improve the engine performance of the lemon peel oil blends with higher substitution (20 and 30%), the piston was coated with a ceramic coating. A novel technique, namely the micro-arc oxidation technique, was utilized for the coating. The coated piston engine fueled with a 20% lemon peel oil blend showed a 3% and 4.69% increase in thermal efficiency compared to the uncoated piston fueled with a 20% blend and sole gasoline, respectively. The hydrocarbon and carbon monoxide emissions of the engine with a coated piston fueled by the 20% lemon peel oil blend were reduced by 12.7% and 12%, respectively, as compared to gasoline operation in the engine with an uncoated piston.

摘要

本研究探索了从柠檬皮生物质中回收油,然后将其作为汽油替代品在火花点火中进行测试。该研究采用了微弧氧化涂层技术,旨在改善柠檬皮油-汽油混合物的发动机性能。通过蒸汽蒸馏从废弃的柠檬皮生物质中回收油,然后按体积比 10、20 和 30%与汽油混合在发动机中作为燃料进行测试。本研究工作采用内窥镜可视化方法评估不同测试条件下汽油和柠檬皮油混合物的燃烧起始和火焰特性。与汽油和包含 20%和 30%柠檬皮油的混合物相比,10%柠檬皮油混合物产生更高的热效率和更低的排放。光学分析表明,发现 10%混合物的预混燃烧最高,从而改善了燃烧,随后增加了气缸压力。为了提高具有更高替代率(20%和 30%)的柠檬皮油混合物的发动机性能,对活塞进行了陶瓷涂层处理。采用了一种新的技术,即微弧氧化技术进行涂层。与未涂层的活塞相比,用 20%柠檬皮油混合物作为燃料的涂覆活塞发动机的热效率分别提高了 3%和 4.69%,而与仅用汽油的未涂层活塞相比。与未涂层活塞发动机中使用汽油相比,用涂覆活塞的发动机以 20%柠檬皮油混合物作为燃料,其碳氢化合物和一氧化碳排放量分别减少了 12.7%和 12%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/773c/11579349/20f478027016/41598_2024_79457_Fig1_HTML.jpg

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