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Combustion and Emission Characteristics of Polyoxymethylene Dimethyl Ethers (PODE)/ Wide Distillation Fuel (WDF) Blends in Diesel Engine

机译:柴油发动机中聚甲醛二甲醚(PODE)/宽蒸馏燃料(WDF)共混物的燃烧和排放特性

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Wide Distillation Fuel (WDF), with a distillation range from Initial Boiling Point of gasoline to Final Boiling Point of diesel, can be easily gained directly by blending diesel with gasoline. However, the reduced auto-ignitability of WDF could lead to higher HC emissions. Polyoxymethylene Dimethyl Ethers (PODE), with good volatility and oxygen content of up to 49%, have great potential to improve combustion and emission characteristics, especially for soot reduction. Experiments were carried out in a light-duty four-cylinder diesel engine fueled with neat diesel, gasoline/diesel blends (GD), GD/PODE blends (GDP) and the combustion and emission characteristics were carefully examined. Results showed that GDP had the lowest PM emission and diesel had the poorest one among the three fuels. Due to the addition of gasoline and the relatively poor ignitability, GD had lower combustion efficiency and higher Soluble Organic Fraction (SOF) emissions than diesel. This drawback can be solved by the addition of PODE due to the high cetane number and oxygen content. Moreover, GDP can achieve higher thermal efficiency in contrast to diesel and GD.
机译:宽蒸馏燃料(WDF),从汽油的初始沸点到柴油的最终沸点,通过将柴油与汽油混合可以容易地获得汽油的初始沸点。然而,WDF的自动点火降低可能导致较高的HC排放。聚甲醛二甲基醚(PODE)具有良好的挥发性和氧含量,高达49%,具有改善燃烧和排放特性的巨大潜力,特别是对于烟灰还原。实验在用纯净的柴油燃料,汽油/柴油共混物(GD),GD / PODE共混物(GDP)和燃烧和发射特性进行燃烧的四缸柴油发动机中进行实验。结果表明,GDP具有最低的PM发射,柴油在三个燃料中有最贫困的柴油。由于汽油的添加和较差的可燃性,GD具有较低的燃烧效率和比柴油更高的可溶性有机馏分(SOF)排放。由于高十六烷值数和氧含量,可以通过添加PODE来解决该缺点。此外,GDP与柴油和GD相比,可以实现更高的热效率。

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