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An experimental study of the combusition and emission performances of 2,5-dimethylfuran diesel blends on a diesel engine

机译:2,5-二甲基呋喃柴油混合物在柴油机上燃烧和排放性能的实验研究

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Experiments were carried out in a direct injection compression ignition engine fueled with diesel-dimethylfuran blends. The combustion and emission performances of diesel-dimethylfuran blends were investigated under various loads ranging from 0.13 to 1.13 MPa brake mean effective pressure, and a constant speed of 1800 rpm. Results indicate that diesel-dimethylfuran blends have different combustion performance and produce longer ignition delay and shorter combustion duration compared with pure diesel. Moreover, a slight increase of brake specific fuel consumption and brake thermal efficiency occurs when a Diesel engine operates with blended fuels, rather than diesel fuel. Diesel-dimethylfuran blends could lead to higher NOx emissions at medium and high engine loads. However, there is a significant reduction in soot emission when engines are fueled with diesel-dimethylfuran blends. Soot emissions under each operating conditions are similar and close to zero except for D40 at 0.13 MPa brake mean effective pressure. The total number and mean geometric diameter of emitted particles from diesel-dimethylfuran blends are lower than pure diesel. The tested fuels exhibit no significant difference in either CO or HC emissions at medium and high engine loads. Nevertheless, diesel fuel produces the lowest CO emission and higher HC emission at low loads of 0.13 to 0.38 MPa brake mean effective pressure.
机译:在装有柴油-二甲基呋喃混合物的直喷压缩点火发动机中进行了实验。在0.13至1.13 MPa制动平均有效压力和1800 rpm恒速的各种负载下研究了柴油-二甲基呋喃共混物的燃烧和排放性能。结果表明,与纯柴油相比,柴油-二甲基呋喃混合物具有不同的燃烧性能,产生更长的点火延迟和更短的燃烧持续时间。此外,当柴油发动机使用混合燃料而不是柴油运行时,会出现制动比燃料消耗和制动热效率略有增加的情况。柴油和二甲基呋喃混合物可能导致中高发动机负荷下更高的NOx排放。但是,当使用柴油-二甲基呋喃混合物为发动机提供燃料时,烟尘排放量将大大减少。除D40在制动平均有效压力为0.13 MPa时,每种操作条件下的烟尘排放量相似且接近于零。柴油-二甲基呋喃共混物排放的颗粒总数和平均几何直径低于纯柴油。在中高发动机负荷下,测试的燃料在CO或HC排放方面均无显着差异。但是,柴油在低负荷(制动平均有效压力)为0.13至0.38 MPa时产生最低的CO排放和较高的HC排放。

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