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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >The Effects of Biodiesel Fuel Blends on Exhaust Emissions From a General Electric Tier 2 Line-Haul Locomotive
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The Effects of Biodiesel Fuel Blends on Exhaust Emissions From a General Electric Tier 2 Line-Haul Locomotive

机译:生物柴油混合燃料对普通2级线牵引机车排气排放的影响

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摘要

This paper documents the exhaust emission test results from a Tier 2 General Electric ES44DC line-haul locomotive with 3280 kW rated traction power and the impact of biodiesel fuel blends on regulated exhaust emissions. Baseline exhaust emission testing was performed with a test fuel containing a sulfur concentration of approximately 400 ppm and was followed by testing of fuel blends containing 2%, 10%, 20%, and 100% soybean derived biodiesel (B2, B10, B20, and B100). Gaseous and paniculate emissions were sampled per Title 40 of the United States Code of Federal Regulations, Part 92. Test results indicate paniculate matter (PM) reductions occurred over the Environmental Protection Agency (EPA) locomotive line-haul and switch duty cycles for each biodiesel blend tested, as compared with the base fuel. The bulk of the PM reduction benefit was present with the 10% biodiesel blend, with comparatively small additional amounts of PM reductions found with increased amounts of biodiesel. PM reduction associated with biodiesel was greater over the switch duty cycle than for the line-haul duty cycle. The change in cycle weighted oxides of nitrogen (NO_x) for B2, B10, and B20 was not greater than the expected test measurement variation; however, B100 increased NO_X by nearly 15% over the line-haul cycle. Changes in hydrocarbon (HC) emissions over the duty cycles were within normal test measurement variation except for neat biodiesel, where HC was reduced by 21% and 24% over the line-haul and switch cycles, respectively. Carbon monoxide reductions of 17% and 24% over the line-haul cycle were measured for B20 and B100, respectively, as compared with the base fuel. Volumetric fuel consumption increased to about 1% for both B2 and B10 blends. Just over 2% increase in volumetric fuel consumption was observed at B20 and nearly 7% increase in volumetric fuel consumption at B100.
机译:本文记录了额定牵引功率为3280 kW的Tier 2 General Electric ES44DC线路牵引机车的废气排放测试结果,以及生物柴油混合燃料对规定废气排放的影响。使用含硫量约为400 ppm的测试燃料进行基准废气排放测试,然后测试包含2%,10%,20%和100%大豆衍生生物柴油(B2,B10,B20和B100)。根据美国联邦法规第40章第92部分对气态和微粒排放物进行采样。测试结果表明,每种生物柴油在环境保护局(EPA)机车线路运输和转换占空比上的微粒物质(PM)减少与基础燃料相比,经过混合测试。 10%的生物柴油混合物中存在大量的PM降低益处,随着生物柴油量的增加,发现的PM降低量相对较小。与生物柴油相关的PM减少在整个开关占空比上要比在线路运输占空比上更大。 B2,B10和B20的循环加权氮氧化物(NO_x)的变化不大于预期的测试测量变化;但是,B100在整个运输周期内使NO_X增加了近15%。除了整洁的生物柴油外,整个工作周期内碳氢化合物(HC)排放的变化均在正常测试测量值范围内,其中纯净的生物柴油在整个生产周期和转换周期内分别降低了21%和24%。与基础燃料相比,B20和B100在整个运输周期内一氧化碳的减少量分别为17%和24%。 B2和B10混合燃料的体积燃料消耗增加到约1%。在B20,观察到的体积燃料消耗仅增加了2%,而在B100处的体积燃料消耗则增加了近7%。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2011年第10期|p.102803.1-102803.7|共7页
  • 作者单位

    Southwest Research Institute®,6220 Culebra Road,San Antonio, TX 78238;

    Southwest Research Institute®,6220 Culebra Road,San Antonio, TX 78238;

    GE Transportation,2901 East Lake Road,Building 63-1E,Erie, PA 16531;

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