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Enhancement in combustion, performance, and emission characteristics of a diesel engine fueled with diesel, biodiesel, and its blends by using nanoadditive

机译:使用纳米纱(纳米纱)加油的燃烧,性能和柴油机和其混合物的燃烧,性能和排放特性的增强

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This article presents the results of investigations carried out to evaluate the improvement in combustion, performance, and emission characteristics of a diesel engine fueled with neat petro-diesel (PD), soybean biodiesel (SB), and 50% SB blended PD (PD50SB) by using carbon nanotube (CNT) as an additive. The acid-alkaline-based transesterification process with sodium hydroxide (NaOH) as a catalyst was applied to derive the methyl ester of SB. A mass fraction of 100 ppm CNT nanoparticle was blended with base fuels by using an ultrasonicator and the physiochemical properties were measured based on EN standards. The measured physiochemical properties are in good agreement with standard limits. The experimental evaluations were carried out under varying brake mean effective pressure (BMEP) conditions in a single-cylinder, four-stroke, and natural aspirated research diesel engine at a constant speed of 1500 rpm. The results reveal that the SB and its blend promote shorter ignition delay period (IDP) that is resulting in lower in-cylinder pressure (ICP) and net heat release rate (NHR) compared to PD. The SB and its blend increase the brake specific fuel consumption (BSFC), and reduce the brake specific energy consumption (BSEC) and exhaust gas temperature (EGT), due to lower heating value, and efficient combustion, respectively. As far as the emission characteristics are concerned, the SB and its blend promote lower magnitude of hydrocarbon (HC), carbon monoxide (CO), carbon dioxide (CO2), and smoke emissions compared to PD except for oxides of nitrogen (NOx) emission. The CNT nanoparticle inclusion with base fuels significantly improves the combustion, performance, and emissions level irrespective of engine load conditions.
机译:本文介绍了评估燃烧,燃料发动机的燃烧,性能和排放特性的改善的调查结果,用整洁的石油 - 柴油(Pd),大豆生物柴油(Sb)和50%Sb混合Pd(PD50SB)通过使用碳纳米管(CNT)作为添加剂。施用酸性碱基酯交换方法作为催化剂的氢氧化钠(NaOH)衍生出Sb的甲酯。通过使用超声波容器将100ppm CNT纳米颗粒的质量分数与基燃料混合,并基于EN标准测量生理化学性质。测量的物理化学特性与标准限制良好。在单缸,四冲程和自然吸气的研究柴油发动机的不同制动平均有效压力(BMEP)条件下进行实验评价,以恒定的速度为1500rpm。结果表明,与Pd相比,Sb及其共混促进了导致缸内压力(ICP)和净热释放速率(NHR)的较短点火延迟时段(IDP)。 Sb及其混合增加了制动特定的燃料消耗(BSFC),并降低了由于较低的加热值和高效燃烧而降低了制动特定能耗(BSEC)和废气温度(EGT)。只要发射特性所涉及的,与除氮(NOx)排放的氧化物相比,Sb及其共混物促进烃(HC),一氧化碳(CO),二氧化碳(CO2),二氧化碳(CO 2)和烟雾排放的较低幅度。无论发动机负载条件如何,CNT纳米颗粒包含基础燃料的纳米型夹杂物明显改善了燃烧,性能和排放水平。

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