Noorollahi Yaser, Asli-Ardeh Ezzatollah Askari, Jahanbakhshi Ahmad, Khodayari Ali, Gorjian Shiva
Department of Biosystems Engineering, University of Mohaghegh Ardabili, Ardabil, Iran.
Mechanical Engineering of Biosystems Department, Lorestan University, Khorramabad, Iran.
Environ Sci Pollut Res Int. 2025 Jan;32(3):1466-1479. doi: 10.1007/s11356-024-35683-8. Epub 2024 Dec 28.
Today, there are environmental problems all over the world due to the emission of greenhouse gasses caused by the combustion of diesel fuel. The excessive consumption and drastic reduction of fossil fuels have prompted the leaders of various countries, including Iran, to put the use of alternative and clean energy sources on the agenda. In recent years, the use of biofuels and the addition of nanoparticles to diesel fuel have reduced pollutant emissions, improved the environment, and enhanced the physicochemical properties of the fuel. The current research deals with the experimental evaluation of emissions and performance of a diesel engine running on graphene nanopowder together with diesel-biodiesel-ethanol blends. The engine variables studied included the engine speed (in three stages 1800, 2200, and 2600 rpm) and three types of fuel including graphene nanoparticles (with values of 25 and 50 ppm), biodiesel (with volume percentages of 4, 6, and 8), and ethanol (with volume percentages of 2 and 4). The results showed that the power and torque of the D86 + B8 + E6 + G50 fuel increased on average by 20.26% and 28.76% at all engine speeds compared to the D100 fuel. The use of D86 + B8 + E6 + G50 fuel resulted in a significant reduction in CO (38.84%), UHC (21.24%), and NOx (19.92%) emissions compared to D100 fuel. In addition, a significant increase in CO emissions (23.19%) was observed. The results of this study clearly show that the use of biofuels and the addition of nanopowder to D100 fuel are very effective methods to improve combustion, performance, and emission characteristics in diesel engines.
如今,由于柴油燃烧产生的温室气体排放,世界各地都存在环境问题。化石燃料的过度消耗和急剧减少促使包括伊朗在内的各国领导人将使用替代能源和清洁能源提上议程。近年来,生物燃料的使用以及向柴油中添加纳米颗粒减少了污染物排放,改善了环境,并提高了燃料的物理化学性质。当前的研究涉及对使用石墨烯纳米粉末与柴油 - 生物柴油 - 乙醇混合燃料的柴油发动机的排放和性能进行实验评估。所研究的发动机变量包括发动机转速(三个阶段:1800、2200和2600转/分钟)以及三种燃料类型,即石墨烯纳米颗粒(含量为25和50 ppm)、生物柴油(体积百分比为4%、6%和8%)和乙醇(体积百分比为2%和4%)。结果表明,与D100燃料相比,D86 + B8 + E6 + G50燃料在所有发动机转速下的功率和扭矩平均分别增加了20.26%和28.76%。与D100燃料相比,使用D86 + B8 + E6 + G50燃料导致CO(38.84%)、UHC(21.24%)和NOx(19.92%)排放显著降低。此外,还观察到CO排放显著增加(23.19%)。这项研究的结果清楚地表明,使用生物燃料以及向D100燃料中添加纳米粉末是改善柴油发动机燃烧、性能和排放特性的非常有效的方法。