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Investigation of The Effects of Iso-Butanol Additives on Spark Ignition Engine Fuelled with Methanol-Gasoline Blends

机译:异丁醇添加剂对甲醇汽油混合燃料火花点火发动机的影响研究

摘要

Alternative fuels on internal combustion engine (ICE) recently has become an attention due to the concern for environmental protection, and needs on reducing dependency on fossil fuels and meeting the current stringent regulation. Alcohol fuel is one of the attractive alternative fuels as it can be produced from renewable resources and is oxygenated. Methanol fuel is a well-known alcohol fuel that can be blended at the lower blending ratio with gasoline and produce better engine operation in spark ignition engine. However, there is a problem related to its methanol properties, especially on its energy content and vapour lock characteristics. Alcohol with higher carbon number such as iso-butanol has high energy content and is able to displace more petroleum gasoline compared to the methanol-gasoline blended fuel. In this study, the focus on the effect of the iso-butanol additive in the methanol-gasoline fuel of unmodified spark ignition engines. A lower ratio of methanol-gasoline blends (M5) was blended with the iso-butanol additive for 5 to 15% with 5% increment compared with base gasoline fuel. Tests were conducted at constant load (100%) with a variable of lower engine speed range from 1000 rpm to 2500 rpm. The results indicate that as for engine performance, M5B15 displayed improvement in engine brake power, BTE (brake thermal efficiency), and EGT (exhaust gas temperature) compared to other blended fuels. Nevertheless, there is a higher fuel consumption was recorded for all methanol-gasoline blended fuels with iso-butanol additive compared to base gasoline fuel. In terms of engine emissions, M5B15 gives a significant reduction in CO and HC emissions compared to base gasoline fuel. However, the increasing trend projected by NOx and CO2 emissions had been recorded in all iso-butanol additive in methanol-gasoline fuels with M5B15 exerting the highest emissions. It can be concluded that iso-butanol additives are a viable option to be blended with existing lower ratio of methanol-gasoline for spark ignition engine operation as an alternative fuel.
机译:出于对环境保护的关注,内燃机(ICE)上的替代燃料最近已引起关注,并且需要减少对化石燃料的依赖并满足当前的严格法规。酒精燃料是有吸引力的代用燃料之一,因为它可以由可再生资源生产并被氧化。甲醇燃料是一种众所周知的酒精燃料,可以与汽油以较低的混合比进行混合,从而在火花点火式发动机中产生更好的发动机操作。然而,存在与其甲醇性质有关的问题,特别是在其能量含量和蒸气锁定特性方面。与甲醇-汽油混合燃料相比,碳原子数更高的酒精(例如异丁醇)具有较高的能量含量,并且能够取代更多的石油汽油。在这项研究中,重点研究了异丁醇添加剂在未改性火花点火发动机的甲醇汽油燃料中的作用。与基础汽油燃料相比,将较低比例的甲醇-汽油共混物(M5)与异丁醇添加剂共混以5至15%的比例增加5%。测试是在恒定负载(100%)下进行的,其较低的发动机转速范围从1000 rpm到2500 rpm。结果表明,与其他混合燃料相比,M5B15的发动机制动功率,BTE(制动热效率)和EGT(废气温度)均有改善。然而,与基础汽油燃料相比,记录有所有具有异丁醇添加剂的甲醇-汽油混合燃料的燃油消耗更高。在发动机排放方面,与基础汽油燃料相比,M5B15显着减少了CO和HC排放。但是,在甲醇汽油燃料中,所有异丁醇添加剂中都记录了由NOx和CO2排放预测的增长趋势,其中M5B15排放最高。可以得出结论,异丁醇添加剂是与现有较低比例的甲醇汽油混合使用的可行选择,用于火花点火发动机运行作为替代燃料。

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