Department of Energy Engineering, Central University of Jharkhand, Ranchi, India.
Department of Thermal and Energy Engineering, Vellore Institute of Technology, Vellore, Tamil Nadu, India.
Environ Sci Pollut Res Int. 2023 Dec;30(60):125034-125047. doi: 10.1007/s11356-022-24648-4. Epub 2022 Dec 11.
Because of their adaptability and user-friendliness, internal combustion engines are widely used for a variety of purposes, including the generation of consistent power as well as transportation. As a result, the question of whether or not these engines can make use of bio-oils is an important one today. Bio-oils derived from biomass pyrolysis differ significantly from those derived from petroleum-based fuels and biodiesel. They could, however, be valuable alternatives to fossil fuels in order to attain a carbon-neutral future. Bio-oil obtained from catalytic pyrolysis of Argemone Mexicana seed using titanium oxide (TiO) nanoparticles was employed in IC engine to check its suitability as an alternative fuel. Engine performance analysis was conducted at B5, B10, B15, B20, B25, and B30 blend for different parameters such as brake thermal efficiency, exhaust gas temperature, and brake-specific fuel consumption with change in engine load. Emission analysis was also carried out for carbon monoxide, hydrocarbon, nitrogen oxides, and carbon dioxide emissions. It was found that B30 blend resembled best performance and the bio-oil produced from catalytic pyrolysis of Argemone mexicana seed can be utilised as a substitute of fossil fuels in IC engine.
由于其适应性和用户友好性,内燃机被广泛用于各种用途,包括产生稳定的动力和运输。因此,这些发动机是否可以利用生物油是当今一个重要的问题。生物质热解产生的生物油与石油基燃料和生物柴油有很大的不同。然而,为了实现碳中和的未来,它们可能是化石燃料的有价值替代品。使用二氧化钛 (TiO) 纳米颗粒对 Argemone Mexicana 种子进行催化热解获得的生物油被用于内燃机中,以检查其作为替代燃料的适用性。在不同的发动机负荷下,对不同的参数(如制动热效率、废气温度和比燃料消耗)进行了发动机性能分析,混合了 B5、B10、B15、B20、B25 和 B30。还进行了排放分析,包括一氧化碳、碳氢化合物、氮氧化物和二氧化碳排放。结果发现,B30 混合燃料的性能最佳,Argemone mexicana 种子催化热解产生的生物油可用于内燃机替代化石燃料。