共查询到18条相似文献,搜索用时 125 毫秒
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降低稀燃汽油机NOx排放是实现稀薄燃烧的最大难题。文中详细阐述了降低稀燃汽油机NOx排放的吸附催化转化和选择还原催化转化技术与研究进展。认为应该充分应用稀燃发动机的排气产物作为还原物质,如HC和CO等,采用沸石和贵金属分子筛催化器对NOx进行选择还原。提出研制具备高的NOx转化效率,同时具有好的水热耐久性和高的抗硫中毒能力的选择还原催化器是我们科技工作者追求的目标。 相似文献
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针对汽油机稀薄燃烧排放控制的特殊要求,研制了一套适用于稀燃汽油机的电控节气门(ECT)系统.该系统可控制稀燃发动机周期性的短暂工作于浓混合气状态,满足NOx吸附-还原催化转化器的工作要求,降低稀燃发动机的NOx排放.并在混合气浓度改变的同时实现对点火时刻和节气门开度的连动控制,维持发动机输出功率稳定.实验结果表明,稀混合气燃烧配以NOx吸附-还原催化转化器进行排气后处理可使NOx排放最低达50×10-6,最高转化率达91%,该系统是解决稀燃及其排放问题的可行方案. 相似文献
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为探究掺氢比对氢-甲醇发动机稀薄燃烧性能的影响,在一台1.8 L涡轮增压缸内直喷汽油机 (GDI) 改装的氢-甲醇发动机上,开展了不同燃空当量比和不同掺氢比条件下的甲醇发动机掺氢燃烧和排放试验研究。结果表明,在稀燃条件下,增大掺氢比能提高发动机缸内最高燃烧压力及放热率峰值,且燃烧相位提前,燃烧持续期缩短。在稀燃情况下适当掺氢有助于改善循环变动,混合气越稀改善效果越好,但随燃空比和掺氢量增大时,循环变动却有恶化的趋势。当燃空当量比大于 0.71 时,增大掺氢比能改善 HC 排放;当燃空当量比大于 0.83 时,掺氢能改善 NOx排放,但 CO 排放恶化;当燃空当量比小于0.83时,增大掺氢比导致NOx排放恶化但CO排放降低。 相似文献
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为改善传统汽油机怠速稀燃的燃烧与排放特性,在1台加装了电控甲醇喷射系统的汽油机上对燃用汽油(M0)、50%质量比例甲醇汽油(M50)和纯甲醇(M100)3种燃料的发动机的怠速稀燃特性进行了试验研究。试验先后在过量空气系数a=1.1和a=1.3两组稀燃工况下进行,怠速转速稳定在800r/min左右。试验结果表明:添加甲醇后,两组稀燃工况下指示热效率均有所提升;发动机的火焰发展期、快速燃烧期和平均指示压力的循环变动系数随着甲醇比例的增加而降低;甲醇能够显著降低发动机怠速稀燃工况下的HC和NOx排放,CO2排放随着甲醇含量的增加也略有降低。 相似文献
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废气再循环对天然气发动机性能影响研究 总被引:2,自引:1,他引:1
利用1台增压中冷天然气发动机,在2 840 r/min,75%和50%负荷、过量空气系数a为1.1~1.3稀混合气条件下研究了EGR对天然气发动机性能影响。结果表明:不同负荷和a下,随着EGR增加,NOx排放迅速降低,与单纯采用空气稀释相比,稀混合气加EGR联合稀释的方式更具降低NOx排放的潜力,75%负荷、a=1.3发动机达到稳定运行界限时(循环变动系数为10%)NOx排放降低到0.3 g/(kW.h),而单纯采用空气稀释时只能降低到1.92 g/(kW.h);当EGR率小于10%时,随着EGR增加,HC和CO排放缓慢增加,有效热效率缓慢下降,当EGR率超过10%后,HC,CO排放增加和有效热效率下降的速度都加快。小负荷时产生的NOx排放较少,且达到相同NOx排放目标值时所需的EGR量也较少,但是会产生较高的HC和CO排放及较低的热效率。 相似文献
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Lean burn is an effective way to improve spark ignition engine fuel economy. In this paper, the combustion and emission characteristics
of a lean burn natural gas fuelled spark ignition engine were investigated at various throttle positions, fuel injection timings,
spark timings and air fuel ratios. The results show that ignition timings, the combustion duration, the coefficient of variation
(COV) of the indicated mean effective pressure (IMEP) and engine-out emissions are dependent on the overall air fuel ratio,
spark timings, throttle positions and fuel injection timings. With the increase of the air fuel ratio, the ignition delays
and combustion duration increases. Fuel injection timings affect ignition timings, combustion duration, IMEP, and the COV
of the IMEP. Late fuel injection timings can decrease the COV of the IMEP. Moreover, the change in the fuel injection timings
reduces the engine-out CO, total hydrocarbon (THC) emissions. Lean burn can significantly reduce NOx emissions, but it results
in high cyclic variations. 相似文献
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《JSAE Review》1998,19(4):311-317
We have investigated combustion characteristics of lean gasoline–air pre-mixture ignited by diesel fuel injection using a high compression direct injection diesel engine. Gasoline was supplied as a uniform lean mixture by using carburetors, and diesel fuel was directly injected into the cylinder. It was confirmed that the lean mixture of air–fuel ratio between 150 and 35 could be ignited and burned by this ignition method. As the diesel fuel injection increased, HC concentration decreased, and NO and CO concentration increased. The exhaust gas emission of pollutants could be reduced when lean mixture was ignited by an optimum diesel fuel injection. 相似文献
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射流点火是实现稳定的稀薄燃烧,大幅度提升发动机热效率的有效技术途径。该文利用设计的一种射流点火器,对气相射流点火(GJI)的燃烧开展研究,揭示了主动式射流点火(射流室内有补充燃料)和被动式射流点火(射流室内无补充燃料)的燃烧和排放特性。结果表明:相比于被动式射流点火,主动式射流点火将过量空气系数拓展至2.0,热效率提升1.5%;进一步引入废气再循环(EGR)后,热效率提升至44.5%。主动式射流点火时,最高热效率点NOx排放较被动式射流点火下降低66%,THC及CO排放的增加使燃烧效率降低3%;引入EGR后,NOx进一步降低79%,燃烧效率保持稳定在96%。 相似文献
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C. L. Myung K. H. Choi I. G. Hwang K. H. Lee S. Park 《International Journal of Automotive Technology》2009,10(2):161-166
In SI engines, valve events have a major influence on volumetric efficiency, fuel economy and exhaust emissions. Moreover,
swirl and tumble motions in the intake charge also improve combustion speed and quality by stratifying the mixture as well
as intensifying the mixing rate of air and fuel. This paper investigates the behaviors of an engine and the combustion phenomenon
for various intake valve timings and intake charge motions using CVVT system and port masking schemes. Test condition includes
a part load and a cold idle condition inclusive of a cold start of the engine. Time-resolved HC and NOx emissions were also
measured at an exhaust port to examine their formation mechanisms and behaviors with fast response HC/NOx analyzers. In conclusion,
the fast burning of fuel and improved combustion quality by enhanced charge motions reduced unburned HC emissions, and advancing
the intake valve opening reduced HC as well as NOx. Furthermore, HCs during the cold transient phase and idle conditions decreased
with recalibrated start parameters such as lean air-fuel ratio and spark retardation via the enhancement of intake charge
motions. 相似文献