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Original Articles

Characterization of Emissions from a Variable Gasoline/Methanol Fueled Car

Pages 296-304 | Received 14 Sep 1989, Accepted 11 Dec 1989, Published online: 06 Mar 2012

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Read on this site (1)

James J. Winebrake & Michael L. Deaton. (1999) Hazardous Air Pollution from Mobile Sources: A Comparison of Alternative Fuel and Reformulated Gasoline Vehicles. Journal of the Air & Waste Management Association 49:5, pages 576-581.
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Articles from other publishers (29)

M.H. Dinesh, Jayashish Kumar Pandey & G.N. Kumar. (2022) Effect of parallel LPG fuelling in a methanol fuelled SI engine under variable compression ratio. Energy 239, pages 122134.
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B.S. Nuthan Prasad, Jayashish Kumar Pandey & G.N. Kumar. (2021) Effect of hydrogen enrichment on performance, combustion, and emission of a methanol fueled SI engine. International Journal of Hydrogen Energy.
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B.S. Nuthan Prasad, Jayashish Kumar Pandey & G.N. Kumar. (2020) Impact of changing compression ratio on engine characteristics of an SI engine fueled with equi-volume blend of methanol and gasoline. Energy 191, pages 116605.
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Prapatsorn Borisut & Aroonsri Nuchitprasittichai. (2019) Methanol Production via CO2 Hydrogenation: Sensitivity Analysis and Simulation—Based Optimization. Frontiers in Energy Research 7.
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Maor Gabay & Eran Tas. (2019) Dispersion-box modeling investigation of the influences of gasoline, diesel, M85 and E85 vehicle exhaust emission on photochemistry. Environmental Pollution 252, pages 1863-1871.
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Changming Gong, Legao Peng, Yulin Chen, Jiajun Liu, Fenghua Liu & Yongqiang Han. (2018) Computational study of intake temperature effects on mixture formation, combustion and unregulated emissions of a DISI methanol engine during cold start. Fuel 234, pages 1269-1277.
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Jiajun Liu, Changming Gong, Legao Peng, Fenghua Liu, Xiumin Yu & Yufeng Li. (2017) Numerical study of formaldehyde and unburned methanol emissions of direct injection spark ignition methanol engine under cold start and steady state operating conditions. Fuel 202, pages 405-413.
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Luis Carlos Monteiro Sales & José Ricardo Sodré. (2012) Cold start emissions of an ethanol-fuelled engine with heated intake air and fuel. Fuel 95, pages 122-125.
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R. Magnusson & C. Nilsson. (2011) The influence of oxygenated fuels on emissions of aldehydes and ketones from a two-stroke spark ignition engine. Fuel 90:3, pages 1145-1154.
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Jeffrey S. Gaffney & Nancy A. Marley. (2009) The impacts of combustion emissions on air quality and climate – From coal to biofuels and beyond. Atmospheric Environment 43:1, pages 23-36.
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Michael D. Jackson & Carl B. Moyer. 2001. Kirk-Othmer Encyclopedia of Chemical Technology. Kirk-Othmer Encyclopedia of Chemical Technology.
Takayuki Kondo, Kiyoshi Hasegawa, Ryutaro Uchida, Masanori Onishi, Akihiro Mizukami & Kenji Omasa. (1996) Absorption of Atmospheric Formaldehyde by Deciduous Broad-Leaved, Evergreen Broad-Leaved, and Coniferous Tree Species. Bulletin of the Chemical Society of Japan 69:12, pages 3673-3679.
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Larry G. Anderson, John A. Lanning, Regina Barrell, Joyce Miyagishima, Richard H. Jones & Pamela Wolfe. (1996) Sources and sinks of formaldehyde and acetaldehyde: An analysis of Denver's ambient concentration data. Atmospheric Environment 30:12, pages 2113-2123.
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Kevin A. Frankel, Tyson M. Mew, Phooi K. Lim & George W. Roberts. (1996) Oxidation of Methanol over a Palladium Monolithic Automotive Catalyst. Environmental Science & Technology 30:6, pages 1997-2003.
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Jerry R. Barker, Andrew A. Herstrom & David T. Tingey. (1996) Formaldehyde: Environmental partitioning and vegetation exposed. Water, Air, and Soil Pollution 86:1-4, pages 71-91.
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Lászlo Haszpra & István Szilágyi. 1996. Urban Air Pollution. Urban Air Pollution 177 186 .
Takayuki. Kondo, Kiyoshi. Hasegawa, Ryutaro. Uchida, Masanori. Onishi, Akihiro. Mizukami & Kenji. Omasa. (2002) Absorption of Formaldehyde by Oleander (Nerium indicum). Environmental Science & Technology 29:11, pages 2901-2903.
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Wen Ma, Louis I. Leviticus & Frank G. Ullman. On-Line Measurement of Formaldehyde in Tailpipe Emissions by Tunable Diode Laser Spectroscopy. On-Line Measurement of Formaldehyde in Tailpipe Emissions by Tunable Diode Laser Spectroscopy.
Laszio Haszpra & Istvan Szilagyi. (1994) Non-methane hydrocarbon composition of car exhaust in Hungary. Atmospheric Environment 28:16, pages 2609-2614.
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E ReeseR D Kimbrough. (1993) Acute toxicity of gasoline and some additives.. Environmental Health Perspectives 101:suppl 6, pages 115-131.
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Quanlu Wang, Daniel Sperling & Janis Olmstead. Emission Control Cost-Effectiveness of Alternative-Fuel Vehicles. Emission Control Cost-Effectiveness of Alternative-Fuel Vehicles.
A.P. Altshuller. (1993) Production of aldehydes as primary emissions and from secondary atmospheric reactions of alkenes and alkanes during the night and early morning hours. Atmospheric Environment. Part A. General Topics 27:1, pages 21-32.
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Andrew V. Lacroix. (1993) Unaccounted-for sources of fossil and isotopically-enriched methane and their contribution to the emissions inventory. Chemosphere 26:1-4, pages 507-557.
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R.A Field, M.E Goldstone, J.N Lester & R Perry. (1992) The sources and behaviour of tropospheric anthropogenic volatile hydrocarbons. Atmospheric Environment. Part A. General Topics 26:16, pages 2983-2996.
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Frank Black. An Overview of the Technical Implications of Methanol and Ethanol as Highway Motor Vehicle Fuels. An Overview of the Technical Implications of Methanol and Ethanol as Highway Motor Vehicle Fuels.
Chandra B. Prakash. Use of Alternative Transportation Fuels and Its Environmental Implications in Canada. Use of Alternative Transportation Fuels and Its Environmental Implications in Canada.
Richard L. Bechtold, Michael T. Miller & James D. Hyde. Ford Methanol FFV Performance/Emissions Experience. Ford Methanol FFV Performance/Emissions Experience.
C. H. Schleyer & W. J. Koehl. Comparison of Gasoline and Methanol Vehicle Emissions Using VOC Reactivity. Comparison of Gasoline and Methanol Vehicle Emissions Using VOC Reactivity.
Peter Gabele, Kenneth T. Knapp, William D. Ray, Richard Snow, William Crews, Ned Perry & Jeffrey Lanning. Ambient Temperature and Driving Cycle Effects on CNG Motor Vehicle Emission. Ambient Temperature and Driving Cycle Effects on CNG Motor Vehicle Emission.

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