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Effects of 7, 9, and 10 psi Vapor Pressure Fuels on Multi-Day Diurnal Evaporative Emissions of Tier 2 and LEV II Vehicles

机译:7,9和10个PSI蒸汽压力燃料对第2层和LEV II车辆的多日蒸发排放的影响

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In order to meet more stringent evaporative emissions requirements, multiple advancements in vehicle fuel system and carbon canister technologies have been made. Regardless of technological advancements, the vapor pressure of the fuel remains a vital property in controlling evaporative emissions. A series of tests were performed to explore the effects of vapor pressure on multiday diurnal evaporative emissions for 9 and 10 psi Reid Vapor Pressure (RVP) 10% ethanol (E10) gasoline-blend fuels, followed by tests with 7 psi RVP E10 gasoline on a subset of the same vehicles. A test procedure was developed to monitor evaporative emissions, canister loading profiles and breakthrough emissions for each of the fuels. A total of five vehicles were tested on all 3 fuels, blended to represent 7, 9, and 10 psi at sea level. Tests were run over 14 days using the United States (U.S.) Federal Diurnal Cycle (72°F to 96°F) in a Sealed Housing for Evaporative Determination (SHED) at a test facility in Colorado. Two of the five vehicles had evaporative emissions systems that met the California Air Resources Board (CARB) requirements for a Partial Zero Emission Vehicle (PZEV), while the other three vehicles were certified to U.S. Tier 2 evaporative emissions standards. The data collected throughout the testing provide a correlation between the hydrocarbon slip from the vehicle canister and the fuel vapor pressure. The data indicate that achieving lower evaporative emissions can be accomplished through the use of decreased vapor pressure fuels.
机译:为了满足更严格的蒸发排放要求,已经进行了车辆燃料系统和碳罐技术的多种进步。无论技术进步如何,燃料的蒸气压仍然是控制蒸发排放的重要性质。进行了一系列测试以探讨蒸气压对9和10个PSI REID蒸气压(RVP)10%乙醇(E10)汽油共混燃料的多日蒸发排放的影响,然后用7psi rvp e10汽油试验同一个车辆的子集。开发了一种测试程序,以监测蒸发排放,罐装载曲线和每个燃料的突破性排放。在所有3个燃料上测试了总共五种车辆,混合在海平面的7,9和10 psi中。在密封壳体中使用美国(美国)联邦昼夜(72°F至96°F),在Colorado的测试设施中的密封壳体中(72°F至96°F)超过14天。五种车辆中的两个具有蒸发排放系统,符合部分零排放车辆(PZEV)的加州空气资源板(CARB)要求,而另外三辆车被美国第2层蒸发排放标准认证。在整个测试中收集的数据提供了从车辆罐和燃料蒸气压之间的烃平方之间的相关性。数据表明,可以通过使用降低的蒸气压燃料来实现实现较低的蒸发排放。

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