首页> 外文期刊>Journal of Engineering Research >Reducing NOx emissions by adding hydrogen-rich synthesis gas generated by a plasma-assisted fuel reformer using Saudi Arabian market gasoline and ethanol for different air/fuel mixtures
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Reducing NOx emissions by adding hydrogen-rich synthesis gas generated by a plasma-assisted fuel reformer using Saudi Arabian market gasoline and ethanol for different air/fuel mixtures

机译:通过使用沙特阿拉伯市场汽油和乙醇添加等离子辅助燃料重整器产生的富含富含富含燃料的合成气体,为不同的空气/燃料混合物而减少NOx排放

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Environmental contamination poses a real threat to the environment and all organisms. Air pollution has increased markedly due to an increase in human activities and petroleum use for electricity generation, transportation, and industrial applications. Internal combustion engines play a significant role in society’s health and power requirements. However, automobiles are the main source of pollution and NOX emissions. This work presents a study of the performance and exhaust emissions of an internal combustion engine fuelled by gasoline available in the Saudi Arabian market, RON91/RON95, with an admixture of syngas and 5% by volume pure ethanol (E5) in the presence of different ultra-lean mixture regimes, including λ=1 for a stoichiometric mixture. The studied ranges were λ=1.13, λ=1.26, λ=1.43, and λ=1.67. An entirely automated engine and plasma converter system was developed for feeding the same type of fuel. The engine was modified for a more efficient operation by introducing a plasma-based fuel reformer. Syngas was produced through the partial oxidation of gasoline with air in a plasma-assisted fuel reformer in the presence of steam to reduce the amount of soot formed in the plasma reactor. The fuel consumption and related emissions were measured. The experimental results demonstrated a significant total reduction of NOx emissions compared with those from the original engine. The most obvious reduction (approximately 50%) of harmful pollution was observed under lean conditions, and the total gasoline consumption (including the gasoline required for the plasma-assisted converter) slightly increased. The results also showed that the NOx content for these new blends was lower using E5-gasoline 91 than that using E5-gasoline 95 and was generally lower using E5-gasoline 91 and syngas than that using E5-gasoline 95 and syngas.
机译:环境污染对环境和所有生物构成了真正的威胁。由于人类活动和石油用于发电,运输和工业应用的石油利用,空气污染显着增加。内燃机在社会的健康和功率要求中起着重要作用。然而,汽车是污染和NOx排放的主要来源。这项工作提出了通过在沙特阿拉伯市场,RON91 / RON95的汽油燃气的内燃机的性能和废气排放研究,在不同的情况下将合成气混合物和5%的体积纯乙醇(E5)混合在一起超瘦混合制度,包括化学计量混合物的λ= 1。所研究的范围是λ= 1.13,λ= 1.26,λ= 1.43和λ= 1.67。开发了一种完全自动发动机和等离子体转换器系统,用于喂养相同类型的燃料。通过引入基于等离子体的燃料重整器来修改发动机以进行更有效的操作。通过在蒸汽存在下通过汽油的部分氧化通过汽油的部分氧化而产生的汽油,以减少等离子体反应器中形成的烟灰量。测量燃料消耗和相关排放。实验结果表明,与原始发动机的那些相比,NOx排放总数显着降低。在贫条件下观察到有害污染的最明显的减少(约50%),并且总汽油消耗(包括等离子体辅助转化器所需的汽油)略有增加。结果还表明,使用E5-汽油95的使用E5-汽油91的NOx含量比使用E5-汽油91和合成气通常低于使用E5-汽油95和合成气。

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