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Investigation exhaust emissions and performance characteristics of a diesel engine by using addition of nanoparticles to diesel fuel

机译:使用向柴油燃料添加纳米粒子来调查柴油机的排气和性能特性

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Users of fossil fuels are facing a range of challenges such as long-term rising demand, climate concerns due to emission of greenhouse gases, ecological pollution, finite reserves and price fluctuations. Diesel fuel is similarly affected, though with its own subset of issues. Studies suggest that diesel fuel characteristics are affected by addition of nanoparticles. In this research, carbon nanotubes (CNTs) were blended with pure diesel as an additive at concentrations of 30, 60, and 90 ppm to assess the emission and performance characteristics of a single-cylinder compression combustion engine. The considered emission contents included CO, CO2, HC, and NO produced by an engine at 50% and 100% loads, at 1800, 2300, and 2800 rpm. Addition of CNTs to the diesel fuel considerably reduced the emission of CO, CO 2 , HC, and NO compared to additive-free diesel fuel. Furthermore, with the addition of carbon nanotubes, the Exhaust Gas Temperature (EGT) and the Brake Specific Fuel Consumption (BSFC) decreased, while the power and Brake Thermal Efficiency (BTE) increased at all loads and speeds of the engine.
机译:化石燃料的用户面临着一系列挑战,如长期上升的需求,由于温室气体排放,生态污染,有限储备和价格波动,气候担忧。柴油燃料同样受到影响,但有自己的问题。研究表明柴油燃料特性受到纳米颗粒的影响。在该研究中,将碳纳米管(CNT)与纯柴油以30,60和90ppm的浓度作为添加剂混合,以评估单缸压缩燃烧发动机的发射和性能特性。所考虑的发射含量包括Co,CO 2,HC,由发动机产生50%和100%负载,1800,2300和2800rpm产生。与无添加剂柴油燃料相比,加入柴油燃料的CNT显着降低了CO,CO 2,HC的发射,并且不相比。此外,随着碳纳米管的添加,排气温度(EGT)和制动器特定燃料消耗(BSFC)降低,而动力和制动热效率(BTE)在发动机的所有负载和速度上增加。

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