Pullagura Gandhi, Bikkavolu Joga Rao, Vadapalli Srinivas, Siva Prasad V Varaha, Rao Chebattina Kodanda Rama, Barik Debabrata, Dennison Milon Selvam
Department of Mechanical Engineering, GITAM School of Technology, Visakhapatnam, India 530045.
Department of Mechanical Engineering, Godavari Institute of Engineering and Technology A, Rajahmundry, A.P, India 533296.
Heliyon. 2024 Feb 16;10(4):e26519. doi: 10.1016/j.heliyon.2024.e26519. eCollection 2024 Feb 29.
Biodiesel has long been recognized as a viable alternative energy source. In order to enhance the quality, and performance of biodiesel-diesel fuel blends while reducing air pollution from combustion, additives must be employed. The present research aims to focus on the addition of SiO novel nanoparticles (at a concentration of 30, 60, and 90 mg/L) in the ternary fuel (TF) blend (75% of Diesel+ 15% of Sea Mango Methyl Ester (SMME15) + 10% of iso-Butanol on a volume basis) to determine engine performance, combustion, and emission characteristics of a 1-cylinder, direct injection, liquid-cooled, diesel engine. In addition to this, a stability analysis for the prepared samples was also carried out as per the ASTM standard. From the investigation, it was observed that, when the nanoparticles mixed with ternary fuel (i.e., TFSi60), the brake thermal efficiency (BTE), In-cylinder pressure (ICP), and net heat release rate (NHRR) were improved by about 10.09, 17.4, and 10.73 % respectively. Whereas the brake-specific fuel consumption (BSFC) (19.13%) and hazardous pollutants like carbon monoxide (CO) (20.06%), unburnt hydrocarbons (UHC) (13.9%), nitrogen oxides (NOx) (11.3%), and smoke (11.2%) were significantly decreased. From the above observations, it is concluded that using a ternary fuel blend with nano additives improves engine performance and combustion while lowering toxic emissions.
生物柴油长期以来一直被视为一种可行的替代能源。为了提高生物柴油 - 柴油混合燃料的质量和性能,同时减少燃烧产生的空气污染,必须使用添加剂。本研究旨在关注在三元燃料(TF)混合物(按体积计,75%柴油 + 15%海芒果甲酯(SMME15)+ 10%异丁醇)中添加新型SiO纳米颗粒(浓度为30、60和90 mg/L),以确定单缸、直喷、液冷柴油发动机的性能、燃烧和排放特性。除此之外,还按照ASTM标准对制备的样品进行了稳定性分析。通过研究发现,当纳米颗粒与三元燃料混合时(即TFSi60),制动热效率(BTE)、缸内压力(ICP)和净热释放率(NHRR)分别提高了约10.09%、17.4%和10.73%。而制动比油耗(BSFC)(19.13%)以及一氧化碳(CO)(20.06%)、未燃碳氢化合物(UHC)(13.9%)、氮氧化物(NOx)(11.3%)和烟雾((11.2%)等有害污染物显著降低。从上述观察结果可以得出结论,使用含有纳米添加剂的三元燃料混合物可提高发动机性能和燃烧效率,同时降低有毒排放物。