Determination of the emissions from an aircraft auxiliary power unit (APU) during the Alternative Aviation Fuel Experiment (AAFEX)

被引:50
|
作者
Kinsey, John S. [1 ]
Timko, Michael T. [2 ]
Herndon, Scott C. [2 ]
Wood, Ezra C. [2 ]
Yu, Zhenhong [2 ]
Miake-Lye, Richard C. [2 ,10 ]
Lobo, Prem
Whitefield, Philip
Hagen, Donald [3 ]
Wey, Changlie [4 ]
Anderson, Bruce E. [5 ]
Beyersdorf, Andreas J. [5 ]
Hudgins, Charles H. [6 ]
Thornhill, K. Lee [6 ]
Winstead, Edward [6 ]
Howard, Robert [7 ]
Bulzan, Dan I. [9 ]
Tacina, Kathleen B. [9 ]
Knighton, W. Berk [8 ]
机构
[1] US EPA, Off Res & Dev, Natl Risk Management Res Lab, Res Triangle Pk, NC 27711 USA
[2] Aerodyne Res Inc, Billerica, MA 01821 USA
[3] Missouri Univ Sci & Technol, Ctr Excellence Aerosp Particulate Emiss Reduct Re, Cloud & Aerosol Sci Lab, Rolla, MO USA
[4] NASA, ASRC Aerosp Corp, John Glenn Res Ctr, Cleveland, OH USA
[5] NASA, Langley Res Ctr, Chem & Dynam Branch, Sci Directorate, Hampton, VA 23665 USA
[6] Sci Syst & Applicat Inc, Hampton, VA USA
[7] USAF, Arnold Engn Dev Ctr, Aerosp Testing Alliance, Arnold AFB, TN USA
[8] Montana State Univ, Dept Chem, Bozeman, MT 59717 USA
[9] NASA, Combust Branch, John Glenn Res Ctr, Cleveland, OH USA
[10] Ctr AeroThermodynam, Billerica, MA 01821 USA
关键词
HYDROCARBON EMISSIONS; JET FUEL; SPECIATION; EXHAUST;
D O I
10.1080/10473289.2012.655884
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The emissions from a Garrett-AiResearch (now Honeywell) Model GTCP85-98CK auxiliary power unit (APU) were determined as part of the National Aeronautics and Space Administration's (NASA's) Alternative Aviation Fuel Experiment (AAFEX) using both JP-8 and a coal-derived Fischer Tropsch fuel (FT-2). Measurements were conducted by multiple research organizations for sulfur dioxide (SO2), total hydrocarbons (THC), carbon monoxide (CO), carbon dioxide (CO2), nitrogen oxides (NOx), speciated gas-phase emissions, particulate matter (PM) mass and number black carbon, and speciated PM In addition, particle size distribution (PSD), number-based geometric mean particle diameter (GMD), and smoke number were also determined from the data collected. The results of the research showed PM mass emission indices (EIs) in the range of 20 to 700 mg/kg fuel and PM number EIs ranging from 0.5 x 10(15) to 5 x 10(15) particles/kg fuel depending on engine load and fuel type. In addition, significant reductions in both the SO2 and PM EIs were observed for the use of the FT fuel. These reductions were on the order of similar to 90% for SO2 and particle mass EIs and similar to 60% for the particle number El, with similar decreases observed for black carbon. Also, the size of the particles generated by JP-8 combustion are noticeably larger than those emitted by the APU burning the FT fuel with the geometric mean diameters ranging from 20 to 50 nm depending on engine load and fuel type. Finally, both particle-bound sulfate and organics were reduced during FT-2 combustion. The PM sulfate was reduced by nearly 100% due to lack of sulfur in the fuel, with the PM organics reduced by a factor of similar to 5 as compared with JP-8. Implications: The results of this research show that APUs can be, depending on the level of fuel usage, an important source of air pollutant emissions at major airports in urban areas. Substantial decreases in emissions can also be achieved through the use of Fischer Tropsch (FT) fuel. Based on these results, the use of FT fuel could be a viable future control strategy for both gas- and particle-phase air pollutants. Supplemental Data: Supplemental data is available for this article. Go to the publisher's online edition of the Journal of the Air & Waste Management Association for information on the test participants, description of the APU, fuel composition, sampling probes and instrumentation, test matrix, benzene to formaldehyde ratios, and speciated emissions by particle size.
引用
收藏
页码:420 / 430
页数:11
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