Center of Excellence for Aerospace Particulate Emissions Reduction Research, Missouri University of Science and Technology, Rolla, Missouri 65409, United States.
Environ Sci Technol. 2012 Oct 2;46(19):10805-11. doi: 10.1021/es301898u. Epub 2012 Sep 17.
Growing concern over emissions from increased airport operations has resulted in a need to assess the impact of aviation related activities on local air quality in and around airports, and to develop strategies to mitigate these effects. One such strategy being investigated is the use of alternative fuels in aircraft engines and auxiliary power units (APUs) as a means to diversify fuel supplies and reduce emissions. This paper summarizes the results of a study to characterize the emissions of an APU, a small gas turbine engine, burning conventional Jet A-1, a fully synthetic jet fuel, and other alternative fuels with varying compositions. Gas phase emissions were measured at the engine exit plane while PM emissions were recorded at the exit plane as well as 10 m downstream of the engine. Five percent reduction in NO(x) emissions and 5-10% reduction in CO emissions were observed for the alternative fuels. Significant reductions in PM emissions at the engine exit plane were achieved with the alternative fuels. However, as the exhaust plume expanded and cooled, organic species were found to condense on the PM. This increase in organic PM elevated the PM mass but had little impact on PM number.
随着机场运营活动增加而导致的排放量不断增加,人们越来越关注这一问题,因此需要评估航空相关活动对机场及其周边地区空气质量的影响,并制定减轻这些影响的策略。正在研究的策略之一是在飞机发动机和辅助动力装置 (APU) 中使用替代燃料,以此作为多元化燃料供应和减少排放的手段。本文总结了一项研究的结果,该研究旨在对燃烧传统 Jet A-1、全合成喷气燃料和其他具有不同成分的替代燃料的 APU(小型燃气涡轮发动机)的排放情况进行描述。在发动机出口平面测量了气相排放,在出口平面和发动机下游 10 米处记录了 PM 排放。替代燃料可将 NO(x)排放量减少 5%,将 CO 排放量减少 5-10%。替代燃料在发动机出口平面实现了 PM 排放量的显著减少。然而,随着废气羽流的扩展和冷却,有机物质被发现凝结在 PM 上。有机 PM 的增加提高了 PM 质量,但对 PM 数量几乎没有影响。