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Unburned hydrocarbon emissions from SI engines using gaseous fuels

机译:使用气体燃料的Si发动机未燃烧的碳氢化合物排放

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Experimental investigations with a combustion bomb have been carried out with mixtures of methane and producer gas produced by thermal gasification of biomass. The investigations showed that the laminar flame speed increased and the amount of UHC decreased for increasing amount of producer gas in the fuel. Application of mathematical models for calculations of quench distances near the bomb walls and post-oxidation reactions has led to the conclusion that the amount of unburned fuel is reduced primarily due to a promotion of post-oxidation processes. Engine experiments have been carried out applying mixtures of natural gas and gasification gas as fuel for different air-fuel ratios. These investigations showed that substituting 16% (Vol.) of the natural gas by producer gas resulted in a decrease of 50% (Vol.) of the UHC from the combustion for lean mixtures.
机译:用甲烷和生产者气体的混合物进行了用燃烧炸弹进行的实验研究,并通过生物质热气化产生。研究表明,层状火焰速度增加,UHC的量减少了燃料中的生产量的量增加。数学模型在炸弹壁和氧化后反应附近计算的淬火距离计算已经导致结论,即未燃烧的燃料量主要是由于促进后氧化过程的贡献。已经进行了发动机实验,用于将天然气和气化气体的混合物应用于不同的空气燃料比的燃料。这些研究表明,通过生产者气体取代16%(Vol.)的天然气,导致UHC的50%(Vol.)的降低来自瘦混合物的燃烧。

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