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掺有氧化铝纳米添加剂的三元燃料混合物(柴油、生物柴油和戊醇)驱动的共轨直喷(CRDI)柴油发动机分析。

Analysis of a CRDI diesel engine powered by ternary fuel blends (diesel, biodiesel, and pentanol) doped with alumina nano-additives.

作者信息

Sudarsanam Mark, Jayaprabakar Jayaraman, Kumar J Aravind, T R Praveenkumar, Rajasimman M

机构信息

Department of Mechanical Engineering, Sathyabama Institute of Science and Technology, Chennai, 600119, India.

Department of Mechanical Engineering, VEMU Institute of Technology, Chittoor, 517112, India.

出版信息

Sci Rep. 2024 Jul 14;14(1):16228. doi: 10.1038/s41598-024-64929-1.

Abstract

Environmental constraints associated with fossil fuels have driven researchers to find a novel, potential and environmentally benign alternative fuel. Biodiesel, vegetable oil, and alcohol have gained rapid momentum thanks to their renewable nature and comparable energy contents in recent years. Accordingly, a Ternary fuel blend is prepared comprising three fuels namely diesel, biodiesel, and pentanol. Waste cooking oil was identified as the source for biodiesel and Pentanol was chosen among various alcohol alternatives due to improved energy density, reduced toxicity. These are endorsed to the enhancement in surface area-volume ratio of nano additives which boosts the catalytic combustion activity and also causing lesser fuel to take part in combustion for maintaining a constant engine speed. The experimentation is done with ternaryfuel blends with varying pentanol and biodiesel concentrations of diesel, biodiesel and pentanol). Upon experimentation, it was observed that, ternary fuel blend 'TF' comprising 70% diesel, 20% biodiesel and 10% pentanol, yielded best performance and was used for doping of Alumina oxide (AlO) nano additives. The AlO nanoparticles were doped with ternary blends at fractions of 10 ppm, 20 ppm, and 30 ppm. It was observed that 20 ppm AlO nanoparticle blended TF blend improved BTE and lowered BSFC by about 12.01% and 22.57% respectively. The performance tremendously along with lowered the CO emission by 49.21%, HC emission by 18.91% and smoke opacity by 9.02%.

摘要

与化石燃料相关的环境限制促使研究人员寻找一种新型、有潜力且环境友好的替代燃料。近年来,生物柴油、植物油和酒精因其可再生性和相当的能量含量而迅速发展。因此,制备了一种三元燃料混合物,它由柴油、生物柴油和戊醇三种燃料组成。废弃食用油被确定为生物柴油的来源,在各种酒精替代品中选择戊醇是因为其能量密度提高、毒性降低。这些都归因于纳米添加剂的表面积与体积比的提高,这提高了催化燃烧活性,并且还使较少的燃料参与燃烧以维持发动机转速恒定。对柴油、生物柴油和戊醇浓度不同的三元燃料混合物进行了实验。实验发现,由70%柴油、20%生物柴油和10%戊醇组成的三元燃料混合物“TF”性能最佳,并用于掺杂氧化铝(AlO)纳米添加剂。AlO纳米颗粒以10 ppm、20 ppm和30 ppm的比例与三元混合物掺杂。结果发现,20 ppm AlO纳米颗粒与TF混合物混合后,制动热效率提高,燃油消耗率降低,分别降低了约12.01%和22.57%。性能大幅提升,同时一氧化碳排放量降低了49.21%,碳氢化合物排放量降低了18.91%,烟度降低了9.02%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59ff/11247078/db8e7a643af6/41598_2024_64929_Fig1_HTML.jpg

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