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Combustion duration influence on hydrogen-ethanol dual fueled engine emissions: An experimental analysis

机译:燃烧持续时间对氢-乙醇双燃料发动机排放的影响:实验分析

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The research presented in this article expresses experimental results on combustion duration effect on the dual fueled engine. In particular, the research was focused on the emissions occurred specifically from a hydrogen-ethanol dual fueled engine. This study was performed on a compression ignition engine that was converted to run and act as a spark ignition engine. This modified engine was fueled by hydrogen–ethanol with various percentage substitutions of hydrogen. The substitution was altered from 20 to 80% at a constant speed of 1500 rpm. The various engine emission characteristics such as CO, Hydrocarbon, and NOx were experimentally determined. This study resulted that at a compression ratio of 11:1 and combustion duration of 25°CA, the best operating conditions of the engine were shown. Moreover, the optimum fuel combination was established at 60 to 80% of hydrogen substitution to ethanol. The experimental results also revealed that at 100% load and at compression ratios 7, 9, and 11; the CO and HC emissions have decreased while NOx increased and followed with the increase in the percentage of hydrogen addition and combustion duration. It was concluded that the retarding combustion duration was preferred for NOx emission control in the engine.
机译:本文提出的研究结果表明了燃烧时间对双燃料发动机的影响的实验结果。尤其是,研究集中于氢-乙醇双燃料发动机的排放。这项研究是在压缩点火发动机上进行的,该发动机被转换为可运行并充当火花点火发动机。这种改进的发动机由氢-乙醇和各种百分比的氢替代燃料。以1500 rpm的恒定速度将取代度从20%更改为80%。实验确定了各种发动机排放特性,例如CO,碳氢化合物和NOx。这项研究的结果表明,在11:1的压缩比和25°CA的燃烧持续时间下,发动机表现出最佳的工作条件。此外,最佳的燃料组合确定为氢取代60%至80%的乙醇。实验结果还表明,在100%负载和压缩比为7、9和11的情况下,随着NOx的增加,CO和HC的排放量减少,而氢气的添加百分比和燃烧持续时间随之增加。结论是,延迟燃烧持续时间对于发动机中的NOx排放控制是优选的。

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