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Original Articles

Exhaust Emissions from a Single-Cylinder Engine Fueled with Gasoline, Methanol, and Ethanol

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Pages 177-182 | Received 27 Feb 1975, Accepted 15 Apr 1975, Published online: 15 May 2007

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Read on this site (2)

A. Şanlı, İ. Kılıçaslan & M. Çanakcı. (2014) A Comparative Parametric Analysis of Equilibrium Combustion Products of Gasoline, Diesel, Ethanol, Methanol and Their Blends. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 36:21, pages 2420-2430.
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Atilla Bilgin, Orhan Durgun & Zehra Sahin. (2002) The Effects of Diesel-Ethanol Blends on Diesel Engine Performance. Energy Sources 24:5, pages 431-440.
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Articles from other publishers (13)

Javed Ahamad, Parmod Kumar & Atul Dhar. (2024) Effect of multi-injection strategy on characteristics of methanol-fueled direct injection spark ignition engine. Physics of Fluids 36:4.
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M. S. Assad, I. G. Kucharchuk, O. G. Penyazkov, A. M. Rusetskii & A. D. Chornyi. (2011) Influence of ethanol on the operating parameters of an internal-combustion engine. Journal of Engineering Physics and Thermophysics 84:6, pages 1311-1317.
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Joseph W. Bollentin & Richard D. Wilk. Autoignition Characteristics of Ethanol. Autoignition Characteristics of Ethanol.
H. S. T. Driver, R. J. Hutcheon, R. D. Lockett, G. N. Robertson, Horst‐Henning Grotheer & Siegfried Kelm. (2010) Elementary Reactions in the Methanol Oxidation System. Part II: Measurement and Modeling of Autoignition in a Methanol‐Fuelled Otto Engine. Berichte der Bunsengesellschaft für physikalische Chemie 96:10, pages 1376-1387.
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Horst‐Henning Grotheer, Siegfried Kelm, H. S. T. Driver, R. J. Hutcheon, R. D. Lockett & G. N. Robertson. (2010) Elementary Reactions in the Methanol Oxidation System. Part I: Establishment of the Mechanism and Modelling of Laminar Burning Velocities. Berichte der Bunsengesellschaft für physikalische Chemie 96:10, pages 1360-1376.
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Jürgen Edelbüttel-Einhaus, Karlheinz Hoyermann, Gabriele Rohde & Johann Seeba. (1992) The detection of the hydroxyethyl radical by rempi/mass-spectrometry and the application to the study of the reactions CH3CHOH+O and CH3CHOH+H. Symposium (International) on Combustion 24:1, pages 661-668.
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G. M. Pannone & R. T. Johnson. Methanol as a Fuel for a Lean Turbocharged Spark ignition Engine. Methanol as a Fuel for a Lean Turbocharged Spark ignition Engine.
Karl H. Kozole & James S. Wallace. The Use of Dimethyl Ether as a Starting Aid for Methanol-Fueled SI Engines at Low Temperatures. The Use of Dimethyl Ether as a Starting Aid for Methanol-Fueled SI Engines at Low Temperatures.
Yousef S. H. Najjar & Hasan Abu Qayyas. Fuel Effect on Reciprocating Engine Performance. Fuel Effect on Reciprocating Engine Performance.
Peter H. Cribb, John E. Dove & Satoshi Yamazaki. (1985) A shock tube study of methanol pyrolysis. Symposium (International) on Combustion 20:1, pages 779-787.
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Ömer L. Gülder. (1983) On water-ethanol-gasoline blends as spark ignition engine fuels. Fuel 62:11, pages 1381-1382.
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H. B. Mathur, M. K. Gajendra Babu & K. Subba Reddi. A Thermodynamic Simulation Model for a Methanol Fueled Spark Ignition Engine. A Thermodynamic Simulation Model for a Methanol Fueled Spark Ignition Engine.
Norman D. Brinkman. Ethanol Fuel-A Single-Cylinder Engine Study of Efficiency and Exhaust Emissions. Ethanol Fuel-A Single-Cylinder Engine Study of Efficiency and Exhaust Emissions.

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