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Diesel engine gaseous and particle emissions fueled with diesel-oxygenate blends

机译:用柴油-含氧化合物混合物供燃料的柴油发动机气态和颗粒排放物

摘要

Experiments were conducted on a 4-cylinder direct-injection diesel engine using ultralow sulfur diesel blended with ethanol, biodiesel and diglyme to investigate the particulate emissions of the engine under five engine loads at the engine speed of 1800 rpm. Four diesel-ethanol blends with oxygen concentrations of 2%, 4%, 6% and 8%, five diesel-biodiesel blends and five diesel-diglyme blends with oxygen concentrations of 2%, 4%, 6%, 8% and 10% were studied. Results show that the particulate matter (PM) emission decreases with the increase of oxygenate content in the blends. Ethanol addition into diesel fuel increases HC, CO, NO x and NO 2 emissions and decreases particle number concentration. Diglyme addition into diesel gives an opposite trend to that of ethanol. Emissions of diesel-biodiesel lay between diesel-ethanol and diesel-diglyme. Under the same oxygen content, different oxygenates show different influence on emissions, particularly on PM reduction efficiency, indicating that the physical properties and chemical structure also influence the PM emissions. Diglyme addition into diesel fuel can simultaneously decrease PM and NO x emissions.
机译:在四缸直喷式柴油发动机上进行了实验,该柴油发动机将超低硫柴油与乙醇,生物柴油和二甘醇二甲醚混合,以研究在1800 rpm转速下五种发动机负载下发动机的颗粒物排放。氧气浓度分别为2%,4%,6%和8%的四种柴油-乙醇混合物,氧气浓度分别为2%,4%,6%,8%,10%和5种柴油-生物柴油混合物和五种柴油-二甘醇二甲醚混合物被研究了。结果表明,随着共混物中含氧量的增加,颗粒物(PM)排放降低。将乙醇添加到柴油中会增加HC,CO,NO x和NO 2的排放并降低颗粒数浓度。将二甘醇二甲醚添加到柴油中的趋势与乙醇相反。柴油生物柴油的排放介于柴油乙醇和柴油二甘醇二甲醚之间。在相同的氧气含量下,不同的含氧化合物对排放物,特别是对PM还原效率的影响不同,这表明物理性质和化学结构也会影响PM排放物。在柴油中添加二甘醇二甲醚可以同时减少PM和NOx排放。

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