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Experimental investigation on regulated and unregulated emissions of a diesel/methanol compound combustion engine with and without diesel oxidation catalyst

机译:带有和不带有柴油氧化催化剂的柴油/甲醇复合内燃机的调节和非调节排放的实验研究

摘要

The use of methanol in combination with diesel fuel is an effective measure to reduce particulate matter (PM) and nitrogen oxides (NOx) emissions from in-use diesel vehicles. In this study, a diesel/methanol compound combustion (DMCC) scheme was proposed and a 4-cylinder naturally-aspirated direct-injection diesel engine modified to operate on the proposed combustion scheme. The effect of DMCC and diesel oxidation catalyst (DOC) on the regulated emissions of total hydrocarbons (THC), carbon monoxide (CO), NOx and PM was investigated based on the Japanese 13 Mode test cycle. Certain unregulated emissions, including methane, ethyne, ethene, 1,3-butadiene, BTX (benzene, toluene, xylene), unburned methanol and formaldehyde were also evaluated based on the same test cycle. In addition, the soluble organic fraction (SOF) in the particulate and the particulate number concentration and size distribution were investigated at certain selected modes of operation. The results show that the DMCC scheme can effectively reduce NOx, particulate mass and number concentrations, ethyne, ethene and 1,3-butadiene emissions but significantly increase the emissions of THC, CO, NO2, BTX, unburned methanol, formaldehyde, and the proportion of SOF in the particles. After the DOC, the emission of THC, CO, NO2, as well as the unregulated gaseous emissions, can be significantly reduced when the exhaust gas temperature is sufficiently high while the particulate mass concentration is further reduced due to oxidation of the SOF.
机译:将甲醇与柴油燃料结合使用是减少使用中的柴油车辆排放的颗粒物(PM)和氮氧化物(NOx)的有效措施。在这项研究中,提出了柴油/甲醇复合燃烧(DMCC)方案,并修改了4缸自然吸气直喷式柴油发动机,使其在提出的燃烧方案下运行。 DMCC和柴油机氧化催化剂(DOC)对总烃(THC),一氧化碳(CO),NOx和PM的规定排放量的影响基于日本13式试验循环进行了研究。还根据相同的测试周期评估了某些不受管制的排放物,包括甲烷,乙炔,乙烯,1,3-丁二烯,BTX(苯,甲苯,二甲苯),未燃烧的甲醇和甲醛。另外,在某些选定的操作模式下,研究了颗粒中的可溶性有机部分(SOF)以及颗粒数的浓度和尺寸分布。结果表明,DMCC方案可以有效减少NOx,颗粒质量和数量浓度,乙炔,乙烯和1,3-丁二烯的排放,但显着增加THC,CO,NO2,BTX,未燃烧的甲醇,甲醛及其比例的排放颗粒中的SOF。 DOC之后,当排气温度足够高时,可显着降低THC,CO,NO2的排放以及未调节的气体排放,而由于SOF的氧化,可进一步降低颗粒质量浓度。

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