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Comparative evaluation of performance and emission characteristics of Moringa oleifera and palm oil based biodiesel in a diesel engine.

机译:辣木和棕榈油基生物柴油在柴油发动机中的性能和排放特性的比较评估。

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摘要

Biodiesels, which are made from various crops, as well as animal fat, are renewable, bio-degradable, and non-toxic and are eco-friendly compared with fossil fuels. Currently, there are more than 350 oil-bearing crops identified as potential sources for biodiesel production. In this study, the potential of biodiesel obtained from a non-edible oil source (Moringa oleifera) was explored and compared with that of palm biodiesel and diesel fuel. The physico-chemical properties of M. oleifera methyl ester were determined, and the properties of 5% and 10% (by volume) blends thereof (MB5 and MB10, respectively) were compared with those of palm-oil blends (PB5 and PB10) and diesel fuel (B0). The performance of these fuels was assessed in a multi-cylinder diesel engine at various engine speeds and under the full-load condition whereas emissions were assessed under the both full-load and half load condition. The properties of palm and M. oleifera biodiesels and their blends meet the ASTM D6751 and EN 14214 standards. Engine performance test results indicated that the PB5 and the MB5 fuels produced slightly lower brake powers and higher brake specific fuel consumption values compared to diesel fuel over the entire range of speeds examined. Engine emission results indicated that the PB5, MB5, PB10 and MB10 fuels reduced the average emissions of carbon monoxide by 13.17%, 5.37%, 17.36%, and 10.60%, respectively, and reduced those of hydrocarbons by 14.47%, 3.94%, 18.42%, and 9.21%, respectively. However, the PB5, MB5, PB10, and MB10 fuels slightly increased nitric oxide emissions by 1.96%, 3.99%, 3.38%, and 8.46%, respectively, and increased carbon dioxide emissions by 5.60%, 2.25%, 11.73%, and 4.96%, respectively, compared to the emissions induced by B0. M. oleifera oil is a potential feedstock for biodiesel production, and the performance of MB5 and MB10 biodiesel is comparable to that of PB5 and PB10 biodiesel and diesel fuel. Because the MB5 and MB10 fuels produce lower exhaust emissions than diesel fuel, these fuels can replace diesel fuel in unmodified engines to reduce the global energy demand and exhaust emissions to the environment.
机译:由多种作物以及动物脂肪制成的生物柴油与矿物燃料相比,具有可再生,可生物降解和无毒的特点,并且具有生态友好性。当前,有350多种含油作物被确定为生物柴油生产的潜在来源。在这项研究中,探索了从非食用油来源(Moringa oleifera)获得的生物柴油的潜力,并将其与棕榈生物柴油和柴油的潜力进行了比较。测定了油茶分支杆菌甲酯的理化性质,并将其5%(体积)和10%(体积)混合物(分别为MB5和MB10)与棕榈油混合物(PB5和PB10)的性能进行了比较。和柴油(B0)。在多缸柴油发动机中,在各种发动机转速和满负荷条件下评估了这些燃料的性能,而在满负荷和半负荷条件下均评估了排放。棕榈和油橄榄生物柴油及其混合物的性能符合ASTM D6751和EN 14214标准。发动机性能测试结果表明,在整个转速范围内,与柴油相比,PB5和MB5燃料产生的制动功率稍低,制动比燃料消耗量更高。发动机排放结果表明,PB5,MB5,PB10和MB10燃料分别使一氧化碳的平均排放量减少了13.17%,5.37%,17.36%和10.60%,而碳氢化合物的平均排放量减少了14.47%,3.94%,18.42 %和9.21%。但是,PB5,MB5,PB10和MB10燃料分别使一氧化氮排放量分别增加了1.96%,3.99%,3.38%和8.46%,二氧化碳排放量分别增加了5.60%,2.25%,11.73%和4.96。与B0引起的排放相比,分别为%。油茶是生物柴油生产的潜在原料,MB5和MB10生物柴油的性能可与PB5和PB10生物柴油和柴油的性能相媲美。由于MB5和MB10燃料产生的废气排放量比柴油燃料低,因此这些燃料可以代替未改装发动机中的柴油燃料,从而减少全球能源需求和对环境的废气排放。

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