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A New Approach to Ethanol Utilization: High Efficiency and Low NO{sub}x in an Engine Operating on Simulated Reformed Ethanol

机译:乙醇利用的一种新方法:在模拟重整乙醇上运行的发动机中的高效率和低NO {SUB} x

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The use of hydrogen as a fuel supplement for lean-burn engines at higher compression ratios has been studied extensively in recent years, with good promise of performance and efficiency gains. With the advances in reformer technology, the use of a gaseous fuel stock, comprising of substantially higher fractions of hydrogen and other flammable reformate species, could provide additional improvements. This paper presents the performance and emission characteristics of a gas mixture of equal volumes of hydrogen, CO, and methane. It has recently been reported that this gas mixture can be produced by reforming of ethanol at comparatively low temperature, around 300C. Experiments were performed on a 1.8-liter, passenger-car Nissan engine modified for single-cylinder operation. Special pistons were made so that compression ratios ranging from CR= 9.5 to 17 could be used. The lean limit was extended beyond twice stoichiometric (up to lambda=2.2). Manifold conditions, operating temperatures, and spark-timing were controlled, and cylinder pressure and NO{sub}x emissions recorded.
机译:近年来,在近年来,近年来,近年来,近年来,近年来,使用氢气作为较高压缩比的燃料燃烧发动机的燃料补充剂,具有良好的性能和效率收益。随着改革器技术的进展,使用气态燃料库存,包括基本上更高的氢和其他易燃重整物种,可以提供额外的改进。本文介绍了相同体积的氢,CO和甲烷的气体混合物的性能和排放特性。最近据报道,该气体混合物可以通过在相对低的温度下重整乙醇,约300℃来制备。对1.8升的乘用车的日产发动机进行实验,用于改性单缸操作。制造特殊的活塞,使得可以使用从Cr = 9.5至17的压缩比率。贫限度超出两次化学计量(直至Lambda = 2.2)。控制歧管条件,操作温度和火花定时,以及滚筒压力和记录的x x排放。

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