首页> 外文会议>ASME Internal Combustion Engine Division technical conference >EXPERIMENTAL INVESTIGATIONS ON COMBUSTION, PERFORMANCE AND EMISSION CHARACTERISTICS OF NEAT JATROPHA BIODIESEL AND ITS METHANOL BLEND IN A DIESEL ENGINE
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EXPERIMENTAL INVESTIGATIONS ON COMBUSTION, PERFORMANCE AND EMISSION CHARACTERISTICS OF NEAT JATROPHA BIODIESEL AND ITS METHANOL BLEND IN A DIESEL ENGINE

机译:柴油发动机燃烧,性能和甲醇混合物燃烧,性能和排放特性的实验研究

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While engines fueled with neat or blended biodiesel have favorable combustion-emission profile in terms of carbon monoxide, particulate matter and unburned hydrocarbons emissions, they are reported to have higher NO_x emissions as compared to petro-diesel. On the other hand, use of alcohols especially methanol, though limited in diesel engines, is found to decrease engine exhaust emissions including smoke and NO_x emissions. The present experimental investigation evaluates the use of biodiesel-methanol blend in mitigating higher NO_x emissions in biodiesel fuelled engines along with its effect on other engine performance conditions. The experimental results obtained for a blend of 90% Jatropha methyl ester and 10% methanol (J90M10) and neat Jatropha methyl ester (J100) by varying engine output load at maximum torque speed of 1400 rpm are analyzed and discussed in this paper. The experimental results at full load operation for J90M10 blend compared with neat J100 indicate a reduction in exhaust nitric oxide and smoke concentrations by 28% and 50% respectively along with a reduction of 2 % in peak pressure and 0.5 % in brake thermal efficiency. Also, a marginal retard in injection timing and a higher ignition delay period is observed with Jatropha methyl ester -methanol blend operation.
机译:虽然有整洁或混合生物柴油的发​​动机在一氧化碳,颗粒物质和未燃烧的烃排放方面具有良好的燃烧 - 排放轮廓,但与石油柴油相比,它们据报道它们具有更高的NO_X排放。另一方面,发现使用醇类尤其是甲醇,虽然在柴油发动机中有限,但可减少包括烟雾和NO_X排放的发动机废气排放。本实验研究评估了生物柴油 - 甲醇混合物在生物柴油燃料发动机中减轻较高的NO_X排放以及其对其他发动机性能条件的影响。通过改变发动机输出负载,在1400rpm的最大扭矩速度下,分析并讨论了通过改变发动机输出负荷的90%麻风树甲酯和10%甲醇(J90M10)和纯粹的麻风法甲基酯(J100)获得的实验结果。对于J90M10混合物的全负荷操作的实验结果与甘肃J100相比,表明排气氧化氮和烟雾浓度的降低分别为28%和50%,峰值压力的减少和制动热效率的0.5%。此外,用Jatropha甲酯 - 甲烷混合物操作观察到注射定时和更高点火延迟时段的边缘延迟。

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