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Combustion and emission characteristics investigation of diesel-ethanol-biodiesel blended fuels in a compression-ignition engine and benefit analysis

机译:压燃式发动机中柴油-乙醇-生物柴油混合燃料的燃烧排放特性研究及效益分析

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This study has investigated feasibility to use ethanol in a compression ignition engine by blending it with diesel fuel, called diesohol. Additionally, biodiesel, acting as a co-solvent, is mixed into diesohol to prevent phase separation. Three blended ratios including B3E5, B7E5 and B10E10 were selected to conduct fuel property analysis and the engine test. In addition, commercial diesel in Thailand (B7) was used as a referent fuel. A commercial diesel engine with common rail fuel system was used to measure engine performance, fuel consumption, exhaust gas emissions including aldehydes as well as combustion characteristics. Benefits of using the diesohol fuel in pickup truck were also investigated.The results showed that with increasing ethanol fraction, the biodiesel fraction needed to be increased to prevent phase separation. When ambient temperature was decreased the phase separation could easily occur. Engine torque and power decreased when percentage of ethanol increased. In-cylinder pressure analysis showed that pilot combustion was moderated and retarded due to higher heat of vaporization of ethanol. With ethanol fraction increasing, the blended fuels required more time to evaporate, induced to higher heat release rate due to long ignition delay. Hydrocarbon emission was increased with longer period of fuel vaporization and mixing processes while the nitrogen oxide increased with increasing of maximum heat release rate. However, the diesohol can help facilitate biofuel market management by increasing biofuel (both ethanol and biodiesel) from diesel sector. In addition, fossil fuel will be suppressed and global warming impacts will be mitigated with diesohol supported measures.
机译:这项研究研究了将乙醇与柴油(称为二乙醇)混合使用在压缩点火发动机中使用乙醇的可行性。另外,将作为助溶剂的生物柴油混入二乙醇中以防止相分离。选择了三个混合比,包括B3E5,B7E5和B10E10,以进行燃油性能分析和发动机测试。此外,泰国的商用柴油(B7)被用作参考燃料。带有共轨燃油系统的商用柴油发动机用于测量发动机性能,燃油消耗,包括醛在内的废气排放以及燃烧特性。还研究了在皮卡车中使用二乙醇燃料的好处。结果表明,随着乙醇分数的增加,生物柴油分数需要增加以防止相分离。当环境温度降低时,相分离很容易发生。当乙醇百分比增加时,发动机扭矩和功率降低。缸内压力分析表明,由于乙醇汽化的热量增加,引燃和缓和。随着乙醇分数的增加,混合燃料需要更多的时间来蒸发,由于较长的点火延迟而导致更高的放热速率。碳氢化合物的排放随着燃料汽化和混合过程的延长而增加,而氮氧化物随着最大放热率的增加而增加。但是,二乙醇可以通过增加柴油领域的生物燃料(乙醇和生物柴油)来帮助促进生物燃料市场管理。此外,通过乙醇支持的措施,将抑制化石燃料并减轻全球变暖的影响。

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