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Influence of aluminum oxide nanoparticle with different particle sizes on the working attributes of diesel engine fueled with blends of diesel and waste plastic oil

机译:铝氧化铝纳米粒径对柴油机燃料燃料燃料燃料的柴油机的工作特征影响

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In the present work, an experimental investigation was conducted to study the influence of adding aluminum oxide nanoparticles (Al2O3) with different average particle sizes as additive to blends of diesel and waste plastic oil (WPO) on performance, emission, and combustion attributes of single-cylinder diesel engine operated at a constant speed. Two samples of Al2O3 nanoparticle with average particle sizes of 20 and 100 nm were dispersed into a WPO20 blend containing 20% of WPO and 80% of diesel in the mass fractions of 10 and 20 ppm using ultrasonic stabilization. The experimental recordings revealed a decrease in engine performance and increase in all emission constituents while replacing diesel with WPO20. However, the addition of both 20- and 100-nm-sized Al2O3 nanoparticles into WPO20 was found to enhance the brake thermal efficiency (BTHE) by 12.2 and 8.9% respectively and decrease the brake-specific fuel consumption (BSFC) by 11 and 8% respectively. The emission constituents such as carbon monoxide (CO), hydrocarbons (HC), nitric oxide (NO), and smoke opacity were minimized by the addition of both 20- and 100-nm-sized nanoparticles into WPO20 blend. However, the reduction of emissions was better for 20-nm-sized particles compared with that of 100-nm-sized particles. The combustion attributes such as cylinder pressure, heat release rate (HRR), and rate of pressure rise (RPR) were raised with shortened ignition delay (ID) by the addition of both sized nanoparticles. Overall, the inclusion of 20-nm-sized nanoparticles performs better catalytic activity to enhance the engine output characteristics along with minimum exhaust emissions.
机译:在本作工作中,进行了实验研究,以研究加入氧化铝纳米颗粒(Al2O3)与不同平均粒度为柴油和废塑料油(WPO)的添加剂的不同平均颗粒尺寸对单一的性能,发射和燃烧属性的添加剂-Cylinder柴油发动机以恒定的速度操作。将平均粒度为20和100nm的两种Al 2 O 3纳米颗粒样品分散到使用超声波稳定化的10%和20ppm的质量级分中含有20%WPO和80%柴油的WPO20混合物中。实验记录揭示了发动机性能和所有排放成分的增加,同时用WPO20替换柴油。然而,发现将20-和100nm大小的Al 2 O 3纳米颗粒添加到WPO20中,分别将制动热效率(B)增强12.2和8.9%,并将制动特定的燃料消耗(BSFC)降低11和8 % 分别。通过将20-和100nm尺寸的纳米颗粒加入WPO20混合物中,使发射成分如一氧化碳(CO),烃(HC),一氧化氮(No)和烟雾不透明度最小化。然而,与100nm大小的颗粒相比,20nm大小的颗粒的排放的减少更好。通过加入两个尺寸的纳米颗粒,通过缩短的点火延迟(ID)升高诸如汽缸压力,热释放速率(HRR)和压力升高速率(RPR)的燃烧属性。总的来说,包含20nm尺寸的纳米颗粒进行更好的催化活性,以增强发动机输出特性以及最小的废气排放。

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