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Impact of Blending Gasoline with Isobutanol Compared to Ethanol on Efficiency, Performance and Emissions of a Recreational Marine 4-Stroke Engine

机译:与异丁醇混合汽油的影响与乙醇对娱乐海洋4行程发动机的效率,性能和排放相比

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This study evaluates iso-butanol as a pathway to introduce higher levels of alternative fuels for recreational marine engine applications compared to ethanol. Butanol, a 4-carbon alcohol, has an energy density closer to gasoline than ethanol. Isobutanol at 16 vol% blend level in gasoline (iB16) exhibits energy content as well as oxygen content identical to E10. Tests with these two blends, as well as indolene as a reference fuel, were conducted on a Mercury 90 HP, 4-stroke outboard engine featuring computer controlled sequential multi-port Electronic Fuel Injection (EFI). The test matrix included full load curves as well as the 5-mode steady-state marine engine test cycle. Analysis of the full load tests suggests that equal full load performance is achieved across the engine speed band regardless of fuel at a 15-20°C increase in exhaust gas temperatures for the alcohol blends compared to indolene. This increase as well as the observed 2.5-3% point improvement in brake thermal efficiency of both alcohol blends compared to the reference fuel are caused by changes in air/fuel ratio; an effect ultimately attributable to the open loop engine control strategy. This control strategy also explains the reduced CO as well as the increased HC+NO_x emissions of E10 and iB16 compared to indolene consistently observed across the 5 operating modes of the steady-state test cycle. The study also suggests that formaldehyde and acetaldehyde emissions increased with alcohol blend level. With equivalent performance and emissions compared to E10 iB16 could be a viable option for increasing renewables utilization in recreational marine engines.
机译:该研究评估了异丁醇作为途径,与乙醇相比,为娱乐海洋发动机应用引入更高水平的替代燃料。丁醇,4-碳醇,能量密度更接近汽油而不是乙醇。汽油(IB16)中16 Vol%共混水平的异丁醇(IB16)表现出能量含量以及与E10相同的氧含量。用这两个共混物以及Indolene作为参考燃料的测试是在汞的90 HP,4行程舷外发动机上进行的,其中包括计算机控制的序贯多端口电子燃料喷射(EFI)。测试矩阵包括满载曲线以及5模式稳态船用发动机测试循环。完全负载测试的分析表明,与indolene相比,在发动机速度带上,无论在15-20°C的废气温度下,燃料增加了相同的全负载性能。与参考燃料相比,这种增加的25-3%的醇混合物的制动热效率的提高,由空气/燃料比的变化引起;最终归因于开环引擎控制策略的效果。该控制策略还解释了CO的减少的CO以及E10和IB16的增加的HC + NO_X排放,与稳态测试周期的5个操作模式一致地观察到的indolene相比。该研究还表明,甲醛和乙醛排放量随酒精混合水平而增加。与E10 IB16相比的等效性能和排放可能是增加娱乐海洋发动机的可再生能源的可行选择。

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