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Aviation fuel

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715: 660:) and a maximum of 310 kPa (45 psi) for most commercial aircraft. Pressure for military aircraft, especially fighters, ranges up to 415 kPa (60 psi). Air being displaced in the tanks is usually vented overboard through a single vent on the aircraft. Because there is only one attachment point, fuel distribution between tanks is either automated or it is controlled from a control panel at the fueling point or in the cockpit. An early use of pressure refueling was on the 39: 757: 615: 568: 638: 118: 525:, where airlines carry extra fuel from low tax jurisdictions. This extra weight increases fuel burn, thus a local fuel tax could potentially increase overall fuel consumption. To avoid increased tankering, a worldwide aviation fuel tax has been proposed. Australia and the United States oppose a worldwide aviation fuel tax, but a number of other countries have expressed interest. 31: 732:. If this is not dissipated before fueling, an electric arc could occur and ignite fuel vapors. To prevent this, aircraft are electrically bonded to the fueling apparatus before fueling begins, and are not disconnected until after fueling is complete. Some regions require the aircraft and/or fuel truck to be grounded too. Pressure fueling systems incorporate a 237:
Sustainable aviation fuel and blends of fossil and sustainably-sourced alternative fuels yield lower emissions of particles and GHGs. They are, however, not being used heavily, because they still face political, technological, and economic barriers, such as currently being more expensive than conventionally produced aviation fuels by a wide margin.
439:: The Challenger Multi-role Aircraft is a special mission variant of the Bombardier Challenger 650 business jet platform. Bombardier bases performance on the use of fuel with an average lower heating value of 18,550 BTU/lb (43.147 MJ/kg) and a density of 0.809 kg/L (6.75 lb/US gal). 692:
Jet fuel is clear to straw-colored, and is dispensed from a special nozzle called a J spout or duckbill that has a rectangular opening larger than 60 mm diagonally, so as not to fit into avgas ports. However, some jet and turbine aircraft, such as some models of the Astar helicopter, have a
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govern the tax exemption of aviation fuels. In the course of an EU initiative, many of these agreements have been modified to allow taxation. A motion for a European Parliament resolution on a European Strategy for Low-emission Mobility has stated that "the possibilities for harmonised international
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Jet-A powers modern commercial airliners and is a mix of extremely refined kerosene and burns at temperatures at or above 49 °C (120 °F). Kerosene-based fuel has a much higher flash point than gasoline-based fuel, meaning that it requires significantly higher temperature to ignite. It is a
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emissions. Cryogenic hydrogen can be used as a liquid at temperatures below 20 K. Gaseous hydrogen involves pressurized tanks at 250–350 bar. With materials available in the 2020s, the mass of tanks strong enough to withstand this kind of high pressure will greatly outweigh the hydrogen fuel
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In recent years, fuel markets have become increasingly volatile. This, along with rapidly changing airline schedules and the desire to not carry excess fuel on board aircraft, has increased the importance of demand forecasting. In March 2022, Austin's Austin-Bergstrom International Airport came
258:(LNG) are fuel feedstocks that aircraft may use in the future. Studies have been done on the feasibility of using natural gas and include the "SUGAR Freeze" aircraft under NASA's N+4 Advanced Concept Development program (made by Boeing's Subsonic Ultra Green Aircraft Research (SUGAR) team). The 236:
Fuels such as sustainable aviation fuel have the advantage that few or no modifications are necessary on the aircraft itself, provided that the fuel characteristics meet specifications for lubricity and density as well as adequately swelling elastomer seals in current aircraft fuel systems.
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Because of the danger of confusing the fuel types, precautions are taken to distinguish between avgas and jet fuel beyond clearly marking all containers, vehicles, and piping. The aperture on fuel tanks of aircraft requiring avgas cannot be greater than
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fouling. Avgas must meet performance guidelines for both the rich mixture condition required for take-off power settings and the leaner mixtures used during cruise to reduce fuel consumption. Aviation fuel can be used as CNG fuel.
559:(ASTM) developed specifications for automobile gasoline as well as aviation gasoline. These specifications are ASTM D910 and ASTM D6227 for aviation gasoline and ASTM D439 or ASTM D4814 (latest revision) for automobile gasoline. 668:. Larger aircraft allow for two or more attachment points; however, this is still referred to as single-point refueling, as either attachment point can refuel all of the tanks. Multiple attachments allow for a faster flowrate. 756: 1296: 1279: 1554: 1638: 386:
Avgas is sold in much lower volume than jet fuel, but to many more individual aircraft operators; whereas jet fuel is sold in high volume to large aircraft operators, such as airlines and militaries.
501:. Other aircraft engines that were modified to run on 100% ethanol were several other types of Lycoming engines (including the Lycoming 235N2C, and Lycoming IO-320) and certain Rotax engines. 1348: 1081: 323:
itself, largely negating the weight to energy advantage of hydrogen fuel over hydrocarbon fuels. Hydrogen has a severe volumetric disadvantage relative to hydrocarbon fuels, but future
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close to running out of fuel, potentially stranding aircraft. Common forecasting techniques include tracking airline schedules and routes, expected distance flown, ground procedures,
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are specially trained and equipped to handle aviation fuel fires and spills. Aviation fuel must be checked daily and before every flight for contaminants such as water or dirt.
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high-quality fuel; if it fails the purity and other quality tests for use on jet aircraft, it is sold to ground-based users with less demanding requirements, such as railroads.
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Any fueling operation can be very dangerous, and aviation operations have characteristics which must be accommodated. As an aircraft flies through the air, it can accumulate
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Alcohol, alcohol mixtures, and other alternative fuels may be used experimentally, but alcohol is not permitted in any certified aviation fuel specification. In Brazil, the
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Avgas is the only remaining lead-containing transportation fuel. Lead in avgas prevents damaging engine knock, or detonation, that can result in a sudden engine failure.
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Even if finally practical, the industry timeline for adopting hydrogen is fairly lengthy. Alternatives to conventional aviation fuel available in the near term include
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Underwing fueling, also called single-point refueling or pressure refueling where not dependent on gravity, is used on larger aircraft and for jet fuel exclusively.
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At some airports, underground fuel pipes allow refueling without the need for tank trucks. Trucks carry the necessary hoses and pumping equipment, but no fuel.
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had been certified to use a 50-50 blend of kerosene and synthetic fuel derived from coal or natural gas as a way of stabilizing the cost of fuel.
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started after the millennium and gained track since about 2020, but as of 2022 was still far away from outright aircraft product development.
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In performance calculations, airliner manufacturers use a density of jet fuel around 6.7 lb/US gal, 8.02 lb/ imp Gal or 0.8 kg/L.
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oline) is used by small aircraft, light helicopters and vintage piston-engined aircraft. Its formulation is distinct from the conventional
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and metal deactivators, biocides, static reducers, icing inhibitors, corrosion inhibitors, and impurities. Principal components include
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EMB-202A is a version of the Ipanema agricultural aircraft with a modified Lycoming IO-540-K1J5 engine so as to be able to run on
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Kerosene type BP Jet TS-1 (for lower temperatures), 43.2 MJ/kg, density at 15 °C is 787 kg/m (34.00 MJ/litre).
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Corporan, Edwin; et al. (2011). "Chemical, Thermal Stability, Seal Swell, and Emissions Studies of Alternative Jet Fuels".
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and synthetically created fuel (aka "e-jet"). These fuels are collectively referred to as "Sustainable Aviation Fuel" (SAF).
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of natural gas even in liquid form compared to conventional fuels gives it a distinct disadvantage for flight applications.
445:: In its airport planning manual for the E195 uses an adopted fuel density of 0.811 kg/L (6.77 lb/US gal). 625:
Overwing fueling is used on smaller planes, helicopters, and all piston-engine aircraft. Overwing fueling is similar to
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Aviation fuel can cause severe environmental damage; all fueling vehicles must carry equipment to control fuel spills.
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which is commonly called mogas or autogas in aviation context. Although it comes in many different grades, its
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Fuels have to conform to a specification in order to be approved for use in type certificated aircraft. The
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Kerosene type BP Jet A-1, 43.15 MJ/kg, density at 15 °C is 804 kg/m (34.69 MJ/litre).
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fueling — one or more fuel ports are opened and fuel is pumped in with a conventional pump.
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to which aircraft must taxi. Some airports have permanent piping to parking areas for large aircraft.
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and fuel suitable for spark-ignition piston engines. There are international specifications for each.
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aircraft designs might be able to accommodate this extra volume without greatly expanding the
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For pressure refueling, a high-pressure hose is attached and fuel is pumped in at 275 
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Aviation fuel is transferred to an aircraft via one of two methods: overwing or underwing.
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of each aircraft and the impact of environmental factors like weather and temperature.
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is a gas turbine fuel used in propeller and jet aircraft and helicopters. It has a low
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Aviation fuel generally arrives at the airport via pipeline systems, such as the
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Alternatives to conventional fossil-based aviation fuels, new fuels made via the
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or other emissions (besides water). However, hydrogen combustion does produce
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The production of aviation fuel falls into two categories: fuel suitable for
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fueling port too small for the J spout, and thus require a smaller nozzle.
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Aviation fuels consist of blends of over two thousand chemicals, primarily
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for aviation fuels depends on their composition. Some typical values are:
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in 2014 has been called an "illegal tax" by countries including the
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measures for kerosene taxation for aviation" needs to be explored.
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was an alternative fuel testbed which was fuelled on LNG. The low
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A worry is that a local aviation fuel tax would cause increased
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FBO Networks, Ground Handling, Trip Planning, Premium Jet Fuel
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Fire King being refueled during firefighting operations in
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The planned inclusion of international aviation into the
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in diameter. Avgas is often dyed and is dispensed from
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at low temperature, has limited ranges of density and
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is a clear to straw-colored fuel, based on either an
1498:"Taxing aviation fuel. Standard Note SN00523 (2012)" 1688:"Aviation Fuel-AvGas Information Aviation Gasoline" 208:is higher than that for "regular" motor gasoline. 89:(kerosene). By 2012, all aircraft operated by the 1160:"Hydrogen-powered aircraft may be getting a lift" 689:of 40 mm (49 mm in the United States). 1475:Rotax engines on ethanol/conventional fuel blend 241:Compressed natural gas and liquified natural gas 200:, or "aviation spirit" in this context) used in 880:, Bill Gunston 1999, Patrick Stephens Limited, 1491: 1489: 898:Wang, M.; Chen, M.; Fang, Y.; Tan, T. (2018). 8: 1208:. NATO Energy Security Centre of Excellence. 743:must be present at any fueling operation. 557:American Society for Testing and Materials 511:Convention on International Civil Aviation 410:/kg, density at 15 °C is 690 kg/ 374:for aircraft, with an emphasis on purity, 1632: 1185: 1012: 925: 915: 815: 813: 316: 809: 591:. The fuel is then driven up to parked 1371:: CS1 maint: archived copy as title ( 1364: 1326:: CS1 maint: archived copy as title ( 1319: 1201:Trakimavicius, Lukas (December 2023). 1053:from the original on 14 September 2016 878:The Development of Piston Aero Engines 851:U.S. Centennial of Flight Commission. 599:. Some airports have pumps similar to 537:European Union Emission Trading Scheme 85:and those with diesel engines may use 1641:from the original on 15 February 2015 1082:"Bringing biojet fuels to the market" 1071:IATA 2014 Report on Alternative Fuels 547:, which cite the Chicago Convention. 309:Hydrogen fuel cells do not produce CO 7: 1557:from the original on 6 December 2017 1420:from the original on 16 October 2016 573:George Bush Intercontinental Airport 378:characteristics and minimization of 287:, if it is produced with power from 1613:Journal of Air Transport Management 1588:from the original on 17 August 2013 1576:Lucas, Caroline (24 January 2012). 736:to preclude unmonitored operation. 302:Some development of technology for 1440:"Lycoming engines for ethanol use" 976:Moore, R. H.; et al. (2017). 25: 1715:"AvGas Grades and Specifications" 1158:Kramer, David (1 December 2020). 775:Southern River, Western Australia 247:Natural_gas § Transportation 1694:from the original on 25 May 2012 1667:from the original on 17 May 2013 1625:10.1016/j.jairtraman.2011.12.004 1523:"Fuel Service and Aviation Fuel" 1254:from the original on 28 May 2012 788:Environmental impact of aviation 755: 1837:Aviation Fuels Technical Review 1354:from the original on 2017-04-07 1309:from the original on 2017-04-08 1246:Sergeant Oil & Gas Co Inc. 1140:from the original on 2016-11-05 571:Aviation fuel storage tanks at 231:certain straight vegetable oils 1414:"The Team - Vanguard Squadron" 838:"The Air Force's Fuel Problem" 1: 1740:Best, Paul (March 28, 2022). 1388:"FAA Ethanol Safety Document" 283:can be used largely free of 157:compression ignition engines 1480:September 21, 2013, at the 745:Airport firefighting forces 342:Production of aviation fuel 155:, it can be used in either 102:Conventional aviation fuels 27:Fuel used to power aircraft 1873: 1496:House of Commons Library. 904:Biotechnology for Biofuels 821:"SKYbrary Aviation Safety" 645:use a double single-point. 273: 244: 174: 151:blend (Jet B). Similar to 110: 917:10.1186/s13068-018-1020-4 304:hydrogen-powered aircraft 276:Hydrogen-powered aircraft 227:sustainable aviation fuel 1841:Chevron Global Aviation 1793:"Rules and Regulations" 1607:Malina, Robert (2012). 528:During a debate in the 515:air services agreements 212:Emerging aviation fuels 1661:"REFUELLING THE COMET" 1551:www.europarl.europa.eu 1286:. Retrieved 2008-09-13 725: 666:Sud Aviation Caravelle 646: 622: 580: 414:(30.81 MJ/litre). 252:Compressed natural gas 130: 97:Types of aviation fuel 43: 35: 34:An aviation fuel truck 717: 640: 620:HK36-TTC Super Dimona 617: 570: 474:), additives such as 256:liquified natural gas 120: 41: 33: 1827:History of jet fuels 1503:. p. 3, note 11 1277:BP Products handbook 450:Chemical composition 437:Bombardier Aerospace 432:Specific cases are: 121:Ground fueling of a 1248:"Aviation gasoline" 1221:"Avgas vs Jet Fuel" 1178:2020PhT....73l..27K 1005:10.1038/nature21420 997:2017Natur.543..411M 1394:on 12 January 2012 1282:2011-06-08 at the 1044:kic-innoenergy.com 951:Energy & Fuels 768:Carson Helicopters 741:Fire extinguishers 730:static electricity 726: 710:Safety precautions 697:Forecasting demand 662:de Havilland Comet 647: 623: 581: 396:net energy content 233:can also be used. 131: 44: 36: 1187:10.1063/PT.3.4632 991:(7645): 411–415. 963:10.1021/ef101520v 734:dead man's switch 643:widebody aircraft 368:Aviation gasoline 325:blended wing body 223:biomass to liquid 16:(Redirected from 1864: 1814: 1813: 1811: 1810: 1804: 1798:. 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Retrieved 857:the original 846: 832: 749: 738: 727: 700: 691: 675: 651: 648: 624: 618:Refueling a 605: 582: 554: 534: 527: 520: 508: 492: 476:antioxidants 456:hydrocarbons 453: 431: 428: 393: 385: 366: 352: 345: 333: 317: 308: 301: 279: 250: 235: 220: 189: 185: 181: 180: 165: 133: 132: 46: 45: 1753:November 7, 1713:Shell.com. 1424:27 December 1117:27 December 793:Rocket fuel 722:Airbus A321 679:millimetres 597:helicopters 329:wetted area 297:solar power 153:diesel fuel 127:URAL tanker 1809:2010-04-22 1778:2022-11-07 1532:2023-03-03 1358:2017-04-07 1313:2017-04-07 1144:2016-12-27 1092:2016-12-27 804:References 798:Swift fuel 672:Misfueling 468:naphthenes 380:spark plug 376:anti-knock 254:(CNG) and 1645:27 August 1619:: 36–41. 1592:27 August 656:(40  633:Underwing 523:tankering 484:isooctane 480:n-heptane 472:aromatics 460:paraffins 358:viscosity 51:petroleum 1851:Category 1692:Archived 1665:Archived 1639:Archived 1586:Archived 1555:Archived 1478:Archived 1418:Archived 1367:cite web 1349:Archived 1322:cite web 1304:Archived 1280:Archived 1252:Archived 1219:Air BP. 1138:Archived 1048:Archived 1023:28300096 936:29445419 782:See also 687:diameter 677:60  610:Overwing 593:aircraft 372:gasoline 354:Jet fuel 281:Hydrogen 217:Biofuels 194:gasoline 149:kerosene 141:kerosene 138:unleaded 134:Jet fuel 113:Jet fuel 107:Jet fuel 87:jet fuel 73:-based ( 71:kerosene 59:aircraft 1174:Bibcode 1014:8025803 993:Bibcode 927:5801801 888:, p. 36 685:with a 683:nozzles 579:, Texas 577:Houston 499:ethanol 464:olefins 443:Embraer 425:Density 188:iation 145:naphtha 125:from a 79:Jet A-1 63:heating 53:-based 1773:Cirium 1725:10 May 1698:10 May 1671:2 July 1398:10 May 1273:Air BP 1258:10 May 1231:10 May 1021:  1011:  985:Nature 934:  924:  910:: 30. 884:  863:10 May 589:bowser 563:In use 470:, and 406:  229:) and 198:petrol 129:(2011) 123:MiG-29 1831:AirBP 1803:(PDF) 1796:(PDF) 1561:7 May 1507:4 Nov 1501:(PDF) 1460:7 May 1454:(PDF) 1443:(PDF) 1386:FAA. 1352:(PDF) 1345:(PDF) 1307:(PDF) 1300:(PDF) 1206:(PDF) 1057:7 May 1051:(PDF) 1040:(PDF) 981:(PDF) 824:(PDF) 771:S-61N 641:Most 545:China 404:44.65 291:like 196:(UK: 182:Avgas 177:Avgas 171:Avgas 55:fuels 1839:(by 1829:(by 1755:2022 1727:2012 1700:2012 1673:2013 1647:2013 1594:2013 1582:2012 1563:2018 1509:2016 1462:2018 1426:2016 1400:2012 1373:link 1328:link 1260:2012 1233:2012 1119:2016 1059:2018 1019:PMID 932:PMID 882:ISBN 865:2012 664:and 595:and 585:CEPS 543:and 509:The 482:and 394:The 295:and 293:wind 77:and 75:JP-8 65:and 49:are 1629:hdl 1621:doi 1182:doi 1009:PMC 1001:doi 989:543 959:doi 922:PMC 912:doi 658:psi 654:kPa 627:car 505:Tax 190:gas 159:or 1853:: 1771:. 1744:. 1690:. 1663:. 1637:. 1627:. 1617:19 1615:. 1611:. 1580:. 1553:. 1549:. 1525:. 1488:^ 1445:. 1416:. 1369:}} 1365:{{ 1347:. 1324:}} 1320:{{ 1302:. 1275:. 1250:. 1180:. 1170:73 1168:. 1162:. 1136:. 1046:. 1042:. 1017:. 1007:. 999:. 987:. 983:. 955:25 953:. 930:. 920:. 908:11 906:. 902:. 812:^ 766:A 575:, 541:US 490:. 466:, 462:, 408:MJ 331:. 315:NO 299:. 186:av 163:. 1843:) 1833:) 1812:. 1781:. 1757:. 1729:. 1702:. 1675:. 1649:. 1631:: 1623:: 1596:. 1565:. 1535:. 1511:. 1464:. 1428:. 1402:. 1375:) 1361:. 1330:) 1316:. 1262:. 1235:. 1190:. 1184:: 1176:: 1147:. 1121:. 1095:. 1061:. 1025:. 1003:: 995:: 965:. 961:: 938:. 914:: 867:. 840:. 826:. 458:( 412:m 318:x 311:2 184:( 147:- 20:)

Index

Aviation Fuel


petroleum
fuels
aircraft
heating
road transport
kerosene
JP-8
Jet A-1
leaded gasoline
jet fuel
U.S. Air Force
Jet fuel

MiG-29
URAL tanker
unleaded
kerosene
naphtha
kerosene
diesel fuel
compression ignition engines
turbine engines
Avgas
gasoline
petrol
motor vehicles
octane rating

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