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Methane Enrichment of Syngas (H2/CO) in a Spark-ignition Direct-injection Engine: Combustion, Performance and Emissions Comparison With Syngas and Compressed Natural Gas

机译:火花点火直喷发动机中合成气(H2 / CO)的甲烷富集:与合成气和压缩天然气的燃烧,性能和排放比较

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摘要

Syngas produced from gasification of solid fuels can serve best as transition fuel from the carbon-based to the hydrogen-based fuels in the internal combustion engines. The lone drawback is its low calorific value being between one tenth and one fifth of that of CNG (Compressed Natural Gas). This results in higher BSFC (brake specific fuel consumption) and limitation on the injection duration at late injection timings in the DI (direct-injection) SI (spark-ignition) engine. Recently, there have been efforts to enrich the syngas with methane so that the calorific value can be improved. This paper presents experimental results on the effect of methane-enrichment of syngas on the combustion, performance and emissions in the DISI engine. The result shows that the MES (methane-enriched syngas)(has extended the operation excess air ratio (λ) compared to syngas and CNG at the same engine speed. Methane-enrichment has maintained the faster and smoother combustion, the lower brake emissions of carbon monoxide and total hydrocarbon, and higher brake emissions of nitrogen oxides observed with syngas. Besides, MES improved the maximum brake thermal efficiency and the BSFC of the syngas by 30.2% and 21.3%, respectively. Therefore, MES can be better replacement to CNG in the DISI engine at all load conditions.
机译:固体燃料的气化产生的合成气最适合用作内燃机中从碳基燃料到氢基燃料的过渡燃料。唯一的缺点是其发热量低,仅为CNG(压缩天然气)的十分之一至五分之一。这导致更高的BSFC(制动特定燃油消耗),并限制了DI(直接喷射)SI(火花点火)发动机中喷射后期的喷射持续时间。近来,已经进行了努力以用甲烷富集合成气,从而可以提高热值。本文介绍了富集合成气对DISI发动机的燃烧,性能和排放的影响的实验结果。结果表明,在相同的发动机转速下,与合成气和压缩天然气相比,富含甲烷的合成气(MES)扩展了运行过量空气比率(λ),甲烷的富集保持了更快,更顺畅的燃烧,并降低了制动排放。用合成气观察到一氧化碳和总碳氢化合物,以及更高的氮氧化物制动排放,此外,MES分别使合成气的最大制动热效率和BSFC分别提高了30.2%和21.3%,因此,MES可以更好地替代CNG在所有负载条件下都可以在DISI发动机中使用。

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