German Aerospace Center (DLR), Institute of Combustion Technology , 70569 Stuttgart , Germany.
NASA Langley Research Center , Hampton , Virginia 23666 , United States.
Environ Sci Technol. 2018 Apr 17;52(8):4969-4978. doi: 10.1021/acs.est.7b06244. Epub 2018 Apr 6.
The application of fuels from renewable sources ("alternative fuels") in aviation is important for the reduction of anthropogenic carbon dioxide emissions, but may also attribute to reduced release of particles from jet engines. The present experiment describes ground-based measurements in the framework of the ECLIF (Emission and Climate Impact of Alternative Fuels) campaign using an Airbus A320 (V2527-A5 engines) burning six fuels of chemically different composition. Two reference Jet A-1 with slightly different chemical parameters were applied and further used in combination with a Fischer-Tropsch synthetic paraffinic kerosene (FT-SPK) to prepare three semi synthetic jet fuels (SSJF) of different aromatic content. In addition, one commercially available fully synthetic jet fuel (FSJF) featured the lowest aromatic content of the fuel selection. Neither the release of nitrogen oxide or carbon monoxide was significantly affected by the different fuel composition. The measured particle emission indices showed a reduction up to 50% (number) and 70% (mass) for two alternative jet fuels (FSJF, SSJF2) at low power settings in comparison to the reference fuels. The reduction is less pronounced at higher operating conditions but the release of particle number and particle mass is still significantly lower for the alternative fuels than for both reference fuels. The observed correlation between emitted particle mass and fuel aromatics is not strict. Here, the H/C ratio is a better indicator for soot emission.
可再生燃料(“替代燃料”)在航空领域的应用对于减少人为二氧化碳排放非常重要,但也可能减少喷气发动机释放的颗粒。本实验在 ECLIF(替代燃料的排放和气候影响)研究计划的框架内,使用一架空客 A320(V2527-A5 发动机)燃烧六种化学成分不同的燃料,描述了基于地面的测量。两种略有不同化学参数的参考 Jet A-1 被应用,并进一步与费托合成石蜡煤油(FT-SPK)结合使用,制备了三种不同芳烃含量的半合成喷气燃料(SSJF)。此外,一种市售的全合成喷气燃料(FSJF)具有燃料选择中最低的芳烃含量。不同燃料成分对氮氧化物或一氧化碳的释放没有明显影响。测量的颗粒排放指数显示,与参考燃料相比,两种替代喷气燃料(FSJF、SSJF2)在低功率设置下的颗粒数量减少了 50%(数量)和 70%(质量),而在较高的工作条件下,减少幅度较小,但替代燃料的颗粒数量和质量释放仍明显低于两种参考燃料。观察到的排放颗粒质量与燃料芳烃之间的相关性并不严格。在这里,H/C 比是表示烟尘排放的更好指标。