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Nitrogen Enriched Combustion of a Natural Gas Engine to Reduce NO_X Emissions

机译:天然气发动机富氮燃烧以减少NO_X排放

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摘要

Nitrogen enrichment of intake air is proposed as an alternative to Exhaust Gas Recirculation (EGR). Experimental results of nitrogen enriched combustion of a Kohler M12 engine (converted to operate with natural gas) are presented in this paper. A 70% reduction in NO_x emissions was observed at full load (4 kW) and ignition timing (IT) equal to -20 ATDC with 2.1% N_2 enrichment (40 slpm). However, NO_x reduction was minimal at lower loads. The effect of spark or ignition timing along with nitrogen enrichment is also reported for full load. It is recognized that advancing the ignition timing from conventional values has more advantages than retarding the same. A 68% reduction in NO_x and a 0.8% drop in Fuel Conversion Efficiency (FCE) were observed at -30 ATDC ignition timing. However, the maximum ignition timing advance with stable engine operation was limited to -40 ATDC. Some of the drawbacks encountered were engine misfire at higher concentrations of nitrogen-rich air and retarded spark timing resulting in poor FCE.
机译:提议将进气中的氮富集作为废气再循环(EGR)的替代方法。本文介绍了科勒M12发动机(转换为天然气运行)富氮燃烧的实验结果。在满负荷(4 kW)和点火正时(IT)等于-20 ATDC的情况下,NO_x排放降低了70%,N_2富集度为2.1 s(40 slpm)。但是,在较低的负荷下,NO_x的减少量很小。还报道了满负荷时火花或点火正时以及氮富集的影响。公认的是,从常规值提前点火正时比延迟点火正时具有更多的优点。在-30 ATDC点火正时,观察到NO_x降低68%,燃料转化效率(FCE)降低0.8%。但是,在发动机稳定运行的情况下,最大点火正时提前限制在-40 ATDC。遇到的一些缺点是在较高浓度的富氮空气中发动机失火,火花正时延迟,导致FCE差。

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