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Study of a cold start fuel produced by an Active Vapor Utilization System for use in gasoline powered vehicles.

机译:对由主动蒸汽利用系统生产的冷启动燃料的研究,用于汽油动力车辆。

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摘要

This research focuses on the continuous development of the Active Vapor Recovery System (AVUS) which has the potential to reduce unburned hydrocarbon emissions from automobiles. The AVUS collects, condenses and stores hydrocarbon vapors from the fuel tank and saves them in a pressurized storage tank for later use as a cold starting fuel. This highly volatile starting fuel has the capability to reduce tailpipe emissions that occur during cold starts, as well as evaporative emissions that occur while the vehicle is at rest.;Instead of commercial gasoline, the bench top AVUS was run using a five component fuel composed of 25% iso-pentane, 17.5% hexane, 17.5% heptanes, 17.5% toluene, and 22.5% isooctane; as well as an E85 mixture composed of 15% five component fuel and 85% ethanol. The condensate produced from AVUS was then analyzed using simple gas chromatograph techniques and found to have as much as 75% iso-pentane. Such a mixture would be an excellent starting fuel. Successive tests on the same batch of fuel proved that AVUS can produce this starting fuel without depleting the parent fuel of the species needed for non-AVUS starts.;Index of refraction and infrared tests were also used in an attempt to establish reliable correlations between the condensate composition, refractive index, and infrared absorption that could be used for onboard analysis of the starting fuel. However, index of refraction results were found to be inconclusive while infrared testing proved to have great potential for determining alcohol concentration.
机译:这项研究专注于主动蒸汽回收系统(AVUS)的持续开发,该系统具有减少汽车未燃烧碳氢化合物排放的潜力。 AVUS收集,冷凝和存储来自燃油箱的碳氢化合物蒸气,并将其保存在加压的储存箱中,以备将来用作冷启动燃料。这种高挥发性的起始燃料具有减少冷启动过程中产生的尾气排放以及车辆静止时产生的蒸发排放的能力。台式AVUS代替商用汽油,使用的是由五种成分组成的燃料25%的异戊烷,17.5%的己烷,17.5%的庚烷,17.5%的甲苯和22.5%的异辛烷;以及由15%的五组分燃料和85%的乙醇组成的E85混合物。然后使用简单的气相色谱技术分析AVUS产生的冷凝液,发现其中含有高达75%的异戊烷。这样的混合物将是极好的起始燃料。对同一批燃料的连续测试证明,AVUS可以生产这种起始燃料,而不会耗尽非AVUS启动所需种类的母体燃料。还使用了折射率和红外测试来建立可靠的相关性。冷凝物成分,折射率和红外吸收可用于车载分析起始燃料。然而,发现折射率结果尚无定论,而红外测试证明具有确定酒精浓度的巨大潜力。

著录项

  • 作者

    Crawford, John.;

  • 作者单位

    The University of Alabama.;

  • 授予单位 The University of Alabama.;
  • 学科 Engineering Automotive.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2009
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:16

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