Economic and environmental assessment of liquefied natural gas as a supplemental aircraft fuel

Progress in Aerospace Sciences - Tập 66 - Trang 17-36 - 2014
Mitch R. Withers1, Robert Malina1, Christopher K. Gilmore1, Jonathan M. Gibbs1, Chris Trigg1, Philip J. Wolfe1, Parthsarathi Trivedi1, Steven R.H. Barrett1
1Laboratory for Aviation and the Environment, Department of Aeronautics and Astronautics, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA

Tài liệu tham khảo

Federal Aviation Administration. FAA aerospace forecast: fiscal years 2013–2033. Washington, DC: US Department of Transportation, Federal Aviation Administration; 2013. ICAO. ICAO environmental report 2010: aviation outlook. International Civil Aviation Organization; 2010. Lee, 2009, Aviation and global climate change in the 21st century, Atmos Environ, 43, 3520, 10.1016/j.atmosenv.2009.04.024 Dorbian, 2011, Estimating the climate and air quality benefits of aviation fuel and emissions reductions, Atmos Environ, 45, 2750, 10.1016/j.atmosenv.2011.02.025 Barrett, 2010, Global mortality attributable to aircraft cruise emissions, Environ Sci Technol, 44, 7736, 10.1021/es101325r Schmidtchen, 1997, Hydrogen aircraft and airport safety, Renew Sustain Energy Rev 1, 4, 239, 10.1016/S1364-0321(97)00007-5 Hileman JI, Ortiz DS, Bartis JT. et al. Near-term feasibility of alternative jet fuels. Final report of PARTNER project 17. Cambridge, MA. Corporan, 2011, Chemical, thermal stability, seal swell, and emissions studies of alternative jet fuels, Energy Fuels, 25, 955, 10.1021/ef101520v Graham, 2006, Swelling of nitrile rubber by selected aromatics blended in a synthetic jet fuel, Energy Fuels, 20, 759, 10.1021/ef050191x ASTM Standard D7566, 2013. Standard specification for aviation turbine fuel containing synthesized hydrocarbons. West Conshohocken, PA: ASTM International; 2003. doi: 10.1520/D7566-13, www.astm.org. IATA. IATA 2012 report on alternative fuels. Montreal, Geneva: International Air Transport Association; 2012. Stratton, 2011, Quantifying variability in life cycle greenhouse gas inventories of alternative middle distillate transportation fuels, Environ Sci Technol, 45, 4637, 10.1021/es102597f Lobo, 2011, Comparison of PM emissions from a commercial jet engine burning conventional, biomass, and Fischer–Tropsch fuels, Environ Sci Technol, 45, 10744, 10.1021/es201902e Carter N, Stratton R, Bredehoeft M. Energy and environmental viability of select alternative jet fuel pathways. AIAA 2011-5968. In: Proceedings of the 47th AIAA/ASME/SAE/ASEE joint propulsion conference & exhibit; 2011. U.S. Department of Energy. US billion-ton update: biomass supply for a bioenergy and bioproducts industry. In: Perlack RD, Stokes BJ, Leads. ORNL/TM-2011/224. Oak Ridge, TN: Oak Ridge National Laboratory; 2011. Remington L. International Business Development Manager – Salof Companies. (C. Trigg, Interviewer), National Petroleum Council: future of transportation fuels study; 2012. Searchinger, 2008, Use of US croplands for biofuels increases greenhouse gases through emissions from land use change, Science, 319, 1238, 10.1126/science.1151861 Staples MD, Olcay H, Malina R, Trivedi P, Pearlson MN, Strzepek K, et al. Water consumption footprint and land requirements of large-scale alternative diesel and jet fuel production. Environ Sci Technol 2013;47(21):12557–65. Scown, 2011, Water footprint of US transportation fuels, Environ Sci Technol, 45, 2541, 10.1021/es102633h Richard, 2010, Challenges in scaling up biofuels infrastructure, Science, 329, 793, 10.1126/science.1189139 Stratton RW, Wong HM, Hileman JI. Life cycle greenhouse gas emission from alternative jet fuels. PARTNER Project 28 report. Cambridge, MA; 2010. EADS. Le Bourget 2011: EADS showcases VoltAir all-electric propulsion system concept. Press release, 〈http://www.eads.com/eads/int/en/news/press.dd6d47cf-8edf-4a8f-b043-a5adaaf238b6.4eb07896-3e59-4301-a243-e00d762cdb20.html〉. Bradley, 2007, Development and experimental characterization of a fuel cell powered aircraft, J Power Sources, 171, 793, 10.1016/j.jpowsour.2007.06.215 Berton JJ, Freeh JE, Wickenheiser TJ. An analytical performance assessment of a fuel cell-powered, small electric airplane. In: Proceedings of the symposium on novel and emerging vehicle and vehicle technology concepts. Brussels, Belgium: Applied Vehicle Technology Panel of the NATO Research and Technology Agency; 2003. Gohardani, 2012, A synergistic glance at the prospects of distributed propulsion technology and the electric aircraft concept for future unmanned air vehicles and commercial/military aviation, Prog Aerosp Sci, 57, 25, 10.1016/j.paerosci.2012.08.001 Tarascon, 2001, Issues and challenges facing rechargeable lithium batteries, Nature, 414, 359, 10.1038/35104644 Bullis K. Once a joke, battery-powered airplanes are nearing reality. Technol Rev 2013. 〈http://www.technologyreview.com/news/516576/once-a-joke-battery-powered-airplanes-are-nearing-reality/〉. Hung, 2012, On parallel hybrid-electric propulsion system for unmanned aerial vehicles, Prog Aerosp Sci, 51, 1, 10.1016/j.paerosci.2011.12.001 Metz B, Davidson O., de Coninck H, Loos M, Meyer L. IPCC special report on carbon dioxide capture and storage. Geneva, Switzerland: Intergovernmental Panel on Climate Change, Working Group III; 2005. U.S. Energy Information Administration. Monthly electric sales and revenue report with state distributions report; Form EIA-861. Annual electric power industry report [accessed 4.10.13]. U.S. Energy Information Administration. Spot prices. In: Petroleum & other liquids, 〈http://www.eia.gov/dnav/pet/pet_pri_spt_s1_a.htm〉 [accessed 4.10.13]. Masson, 2005, High power density superconducting motor for all-electric aircraft propulsion, IEEE Trans Appl Supercond, 15, 2226, 10.1109/TASC.2005.849618 Khandelwal, 2013, Hydrogen powered aircraft: the future of air transport, Prog Aerosp Sci, 60, 45, 10.1016/j.paerosci.2012.12.002 Gibbs J, Siegel D, Donaldson A. Design and performance assessment of a partial natural gas fuel system retrofit for commercial aircraft. In: 50th AIAA aerospace sciences meeting including the new horizons forum and aerospace exposition; 2011. AIAA 2012-1047. Carson LK, Davis GW, Versaw EF, et al. Study of methane fuel for subsonic transport aircraft. NASA contractor report 159320; 1980. Pohl, 1997, Hydrogen in future civil aviation, Int J Hydrog Energy, 22, 1061, 10.1016/S0360-3199(95)00140-9 Simbeck, 2002 Nojoumi, 2009, Greenhouse gas emissions assessment of hydrogen and kerosene-fueled aircraft propulsion, Int J Hydrog Energy, 34, 1363, 10.1016/j.ijhydene.2008.11.017 Dahl, 1998, Engine control and low-NOx combustion for hydrogen fuelled aircraft gas turbines, Int J Hydrog Energy, 23, 695, 10.1016/S0360-3199(97)00115-8 U.S. Energy information administration. Annual energy outlook 2012. Argonne National Laboratory. Greenhouse gases, regulated emissions, and energy use in transportation model, revision 1; 2012. 〈http://greet.es.anl.gov/〉. U.S. Department of Energy. Fuel cell technologies office multi-year research, development and demonstration plan. Hydrogen production 2012. Updated July 2013. International Energy Agency (IEA). World energy outlook. Paris: IEA; 2012. Lockheed Martin Aeronautics Company. C-130J-30 super hercules: whatever the situation, we’ll be there. SpecBook, 2004; Dept. 002H, MZ 0264. NFPA 57: Liquid Natural Gas Vehicular Systems Code, 2002 ed. National Fire Protection Association. Nieczkoski S. Technology Applications Inc. Chief Technology Officer, Technology Applications Inc. (J. Gibbs, Interviewer); 2012. Carson LK, Davis GW, Versaw EF, Cunnington Jr. GR, Daniels EJ. Study for methane fuel for subsonic aircraft. NASA contractor report 159320. Lockheed California Company; 1980. U.S. Department of Transportation. Clean air program, summary of assessment of the safety, health, environmental and system risks of alternative fuel. Research and Special Programs Administration, August 1995 [PDF Edition, August 1999]. Interview with Rolls Royce Engineering Representative on August 2, 2012 (Interviewer J. Gibbs). Pearlson, 2013, A techno-economic review of hydroprocessed renewable esters and fatty acids for jet fuel production, Biofuels Bioprod Biorefin., 7, 89, 10.1002/bbb.1378 Raymer, 2006 U.S. Department of Labor, Bureau of Labor Statistics. Databases, tables & calculators by subject. In: Producer price index. 〈http://data.bls.gov/cgi-bin/dsrv〉 [accessed 6.08.13]. Markish J. Valuation techniques for commercial aircraft program design [Master’s thesis]. Cambridge, MA: Department of Aeronautics and Astronautics, Massachusetts Institute of Technology; 2000. Transportation Economics & Management Systems, Inc. Impact of high oil prices on freight transportation: modal shift potential in five corridors: executive summary. Prepared for Maritime Administration, U.S. Department of Transportation; 2008. U.S. Office of Management and Budget. Regulatory analysis. Circular A-4; 2003. Barrett, 2012, Public health, climate, and economic impacts of desulfurizing jet fuel, Environ Sci Technol, 46, 4275, 10.1021/es203325a Mishan, 2007 Freeman, 2003 Ford, 2011, An investigation into the relationship of retail gas prices on oil company profitability, Appl Econ, 43, 4033, 10.1080/00036841003781486 EIA. Rail deliveries of oil and petroleum products up 38% in first half of 2012. In: Today in energy, 〈http://www.eia.gov/todayinenergy/detail.cfm?id=7270〉; 2012 [accessed July 2013]. EIA. Performance profiles of major energy producers 2009, February 25, 2011. Report no. DOE/EIA-0206; 2009. Hileman, 2013, The carbon dioxide challenge facing aviation, Prog Aerosp Sci, 63, 84, 10.1016/j.paerosci.2013.07.003 Howarth, 2011, Methane and the greenhouse-gas footprint of natural gas from shale formations, Clim Change, 106, 679, 10.1007/s10584-011-0061-5 Burnham, 2011, Life-cycle greenhouse gas emissions of shale gas, natural gas, coal, and petroleum, Environ Sci Technol, 46, 619, 10.1021/es201942m Kirchgessner, 1997 Lelieveld, 2005, Greenhouse gases: low methane leakage from gas pipelines, Nature, 434, 841, 10.1038/434841a Shine, 2009, The global warming potential—the need for an interdisciplinary retrial, Clim Change, 96, 467, 10.1007/s10584-009-9647-6 Tol, 1995, The damage costs of climate change toward more comprehensive calculations, Environ Resour Econ, 5, 353, 10.1007/BF00691574 Mahashabde, 2011, Assessing the environmental impacts of aircraft noise and emissions, Prog Aerosp Sci, 47, 15, 10.1016/j.paerosci.2010.04.003 Hasselmann, 1997, Sensitivity study of optimal CO2 emission paths using a simplified structural integrated assessment model, Climat Change, 37, 345, 10.1023/A:1005339625015 Wolfe PJ, Yim SHL, Lee GL, Ashok A, Barrett SRH, Waitz IA. Near-airport distribution of the environmental costs of aviation. Transport Policy [in press]. Nordhaus WD. The ‘DICE’ model: background and structure of a dynamic integrated climate-economy model of the economics of global warming. Cowles Foundation Discussion Papers 1009; 1992. Nordhaus, 2008 Wolfe PJ. Aviation environmental policy effects on national-and regional-scale air quality, noise, and climate impacts [Master’s Thesis]. Cambridge, MA: Department of Aeronautics and Astronautics, Massachusetts Institute of Technology; 2012. Ackerman, 2006, The economics of inaction on climate change: a sensitivity analysis, Clim Policy, 6, 509, 10.1080/14693062.2006.9685617 Wigley, 2002, Radiative forcing due to reactive gas emissions, J Clim, 15, 2690, 10.1175/1520-0442(2002)015<2690:RFDTRG>2.0.CO;2 Mahashabde A. Assessing environmental benefits and economic costs of aviation environmental policy measures [PhD Dissertation]. Cambridge, MA: Department of Aeronautics and Astronautics, Massachusetts Institute of Technology; 2009. Nakicenovic N. et al. Special report on emissions scenarios: a special report of working group III of the intergovernmental panel on climate change, no. PNNL-SA-39650. Richland, WA, US: Pacific Northwest National Laboratory, Environmental Molecular Sciences Laboratory (US); 2000. Solomon S, Qin D, Manning M, Chen Z, Marquis M, Averyt KB, et al. The physical science basis. Contribution of working group I to the fourth assessment report of the Intergovernmental Panel on Climate Change; 2007. p. 235–337. Marten, 2012, Estimating the social cost of non-CO2 GHG emissions: methane and nitrous oxide, Energy Policy, 10.1016/j.enpol.2012.09.073 Weisbach D, Sunstein C. Climate change and discounting the future: a guide for the perplexed. Reg-Markets Center Working Paper, 2008. (08-19), 08-20. ICAO CAEP. CAEP/9 cost–benefit analysis of CAEP/9 noise stringency options. CAEP/9-IP/25. ICAO-CAEP, ninth meeting; 2013. Stevenson, 2004, Radiative forcing from aircraft NOx emissions: mechanisms and seasonal dependence, J Geophys Res, 109, D17307, 10.1029/2004JD004759 Wild, 2001, Indirect long‐term global radiative cooling from NOx emissions, Geophys Res Lett, 28, 1719, 10.1029/2000GL012573 Hoor, 2009, The impact of traffic emissions on atmospheric ozone and OH: results from QUANTIFY, Atmos Chem Phys, 9, 3113, 10.5194/acp-9-3113-2009 Pope, 2006, Health effects of fine particulate air pollution: lines that connect, J Air Waste Manage Assoc, 56, 709, 10.1080/10473289.2006.10464485 U.S. Environmental Protection Agency. Expanded expert judgment assessment of the concentration–response relationship between PM2.5 exposure and mortality: final report. EPA; 2006. Correia, 2013, Effect of air pollution control on life expectancy in the United States: an analysis of 545 US counties for the period from 2000 to 2007, Epidemiology, 24, 23, 10.1097/EDE.0b013e3182770237 U.S. Environmental Protection Agency. The benefits and costs of the clean air act: 1990 to 2020. Office of Air and Radiation: Washington, DC; 2011. U.S. Environmental Protection Agency. Guidelines for preparing economic analysies. Washington, DC: National Center for Environmental Economics, Office of Policy; 2010. Koo J, Wang Q, Henze DK, Waitz IA, Barrett SRH. Spatial sensitivities of human health risk to intercontinental and high-altitude pollution. Atmos Environ 2013;71:140–47. Henze, 2007, Development of the adjoint of GEOS-Chem, Atmos Chem Phys, 7, 2413, 10.5194/acp-7-2413-2007 Ashok, 2013, Development of a response surface model of aviation’s air quality impacts in the United States, Atmos Environ, 77, 445, 10.1016/j.atmosenv.2013.05.023