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Potential Analysis of a DMC/MeFo Mixture in a DISI Single and Multi-Cylinder Light Vehicle Gasoline Engine

Journal Article
2021-01-0561
ISSN: 2641-9645, e-ISSN: 2641-9645
Published April 06, 2021 by SAE International in United States
Potential Analysis of a DMC/MeFo Mixture in a DISI Single and
                    Multi-Cylinder Light Vehicle Gasoline Engine
Sector:
Citation: Blochum, S., Gadomski, B., Retzlaff, M., Thamm, F. et al., "Potential Analysis of a DMC/MeFo Mixture in a DISI Single and Multi-Cylinder Light Vehicle Gasoline Engine," SAE Int. J. Adv. & Curr. Prac. in Mobility 4(1):15-31, 2022, https://doi.org/10.4271/2021-01-0561.
Language: English

References

  1. EUROPEAN COMMISSION 2018
  2. Härtl , M. , Seidenspinner , P. , Jacob , E. , and Wachtmeister , G. Oxygenate Screening on a Heavy-Duty Diesel Engine and Emission Characteristics of Highly Oxygenated Oxymethylene Ether Fuel OME1 Fuel 153 328 335 2015 10.1016/j.fuel.2015.03.012
  3. Härtl , M. , Stadler , A. , Backes , F. , Wachtmeister , G. et al. Potentially CO2-Neutral Fuels for Clean SI Engines MTZ Worldw 78 7-8 76 83 2017 10.1007/s38313-017-0058-1
  4. Maier , T. , Härtl , M. , Jacob , E. , and Wachtmeister , G. Dimethyl Carbonate (DMC) and Methyl Formate (MeFo): Emission Characteristics of Novel, Clean and Potentially CO2 -Neutral Fuels Including PMP and Sub-23 nm Nanoparticle-Emission Characteristics on a Spark-Ignition DI-Engine Fuel 256 115925 2019 10.1016/j.fuel.2019.115925
  5. Takahashi , F. and Glassman , I. Sooting Correlations for Premixed Flames Combustion Science and Technology 37 1-2 1 19 2007 10.1080/00102208408923743
  6. Tundo , P. and Selva , M. The Chemistry of Dimethyl Carbonate Accounts of Chemical Research 35 9 706 716 2002 10.1021/ar010076f
  7. Pacheco , M.A. and Marshall , C.L. Review of Dimethyl Carbonate (DMC) Manufacture and Its Characteristics as a Fuel Additive Energy Fuels 11 1 2 29 1997 10.1021/ef9600974
  8. Yang , J. , Jiang , Y. , Karavalakis , G. , Johnson , K.C. et al. Impacts of Dimethyl Carbonate Blends on Gaseous and Particulate Emissions from a Heavy-Duty Diesel Engine Fuel 184 681 688 2016 10.1016/j.fuel.2016.07.053
  9. Kocis , D. , Song , K. , Lee , H. , and Litzinger , T. Effects of Dimethoxymethane and Dimethylcarbonate on Soot Production in an Optically-accessible DI Diesel Engine SAE Technical Paper Series, International Fuels & Lubricants Meeting & Exposition Oct. 16, 2000 Warrendale, PA 2000 https://doi.org/10.4271/2000-01-2795
  10. Wang , J. , Wu , F. , Xiao , J. , and Shuai , S. Oxygenated Blend Design and Its Effects on Reducing Diesel Particulate Emissions Fuel 88 10 2037 2045 2009 10.1016/j.fuel.2009.02.045
  11. Mei , D. , Wu , H. , Ren , H. , Hielscher , K. et al. Combustion Cycle-by-Cycle Variations in a Common Rail Direct Injection Engine Fueled with Dimethyl Carbonate-Diesel Blend J. Energy Eng. 142 1 4014059 2016 10.1061/(ASCE)EY.1943-7897.0000259
  12. Lee , J.S. , Kim , J.C. , and Kim , Y.G. Methyl Formate as a New Building Block in C1 Chemistry Applied Catalysis 57 1 1 30 1990 10.1016/S0166-9834(00)80720-4
  13. Dawson , B. and Spannagle , M. The Complete Guide to Climate Change London Routledge 2009 9781134021246
  14. Klezl , Peter Fuel for Internal Combustion Engines and Use of Methyl Formate as Fuel Additive 1992
  15. Dooley , S. , Burke , M.P. , Chaos , M. , Stein , Y. et al. Methyl Formate Oxidation: Speciation Data, Laminar Burning Velocities, Ignition Delay Times, and a Validated Chemical Kinetic Model Int. J. Chem. Kinet. 42 9 527 549 2010 10.1002/kin.20512
  16. Wagner , C. , Grill , M. , Keskin , M.-T. , Bargende , M. et al. Potential Analysis and Virtual Development of SI Engines Operated with Synthetic Fuel DMC+ SAE Technical Paper Series, WCX SAE World Congress Experience Apr. 21, 2020 Warrendale, PA 2020
  17. Gumz , W. Eine neue Heizwertformel für feste Brennstoffe Feuerungstechnik 26 10 322 323 1938
  18. Stadler , A. , Wessoly , M. , Blochum , S. , Härtl , M. et al. Gasoline Fueled Pre-Chamber Ignition System for a Light-Duty Passenger Car Engine with Extended Lean Limit SAE Int. J. Engines 12 3 323 339 2019 https://doi.org/10.4271/03-12-03-0022
  19. Peer , J. , Backes , F. , Sauerland , H. , Härtl , M. et al. Development of a High Turbulence, Low Particle Number, High Injection Pressure Gasoline Direct Injection Combustion System SAE Int. J. Engines 9 4 2301 2311 2016 https://doi.org/10.4271/2016-01-9046
  20. Baumgartner , L.S. , Karmann , S. , Backes , F. , Stadler , A. et al. Experimental Investigation of Orifice Design Effects on a Methane Fuelled Prechamber Gas Engine for Automotive Applications SAE Technical Paper Series, 13th International Conference on Engines & Vehicles Sep. 10, 2017 Warrendale, PA 2017
  21. Härtl , M. , Stadler , A. , Blochum , S. , Pélerin , D. et al. DMC+ as Particulate Free and Potentially Sustainable Fuel for DI SI Engines Geringer , B. and Lenz , H.P. 39. Internationales Wiener Motorensymposium April 26-27, 2018 Fortschritt-Berichte VDI. Reihe 12, Verkehrstechnik, Fahrzeugtechnik 978-3-18-380712-3 202 229 2018
  22. Stadler , A. , Sauerland , H. , Härtl , M. , and Wachtmeister , G. The Potential of Gasoline Fueled Pre Chamber Ignition Combined with Elevated Compression Ratio SAE Technical Paper Series, WCX SAE World Congress Experience Apr. 21, 2020 Warrendale, PA 2020
  23. The Council of the European Union 1999
  24. Gelner , A.D. , Pastoetter , C. , Beck , H.A. , Härtl , M. et al. Fuel Dosing on a Diesel Oxidation Catalyst for After-Treatment System Heating on a Heavy-Duty Engine Powered by Polyoxymethylene Dimethyl Ethers SAE Technical Paper Series, SAE Powertrains, Fuels & Lubricants Meeting Sep. 22, 2020 Warrendale, PA 2020
  25. Wallner , T. Correlation Between Speciated Hydrocarbon Emissions and Flame Ionization Detector Response for Gasoline/Alcohol Blends ASME 2010 Internal Combustion Engine Division Fall Technical Conference San Antonio, Texas, USA 978-0-7918-4944-6 119 128 2010
  26. Jorgensen , A.D. , Picel , K.C. , and Stamoudis , V.C. Prediction of Gas Chromatography Flame Ionization Detector Response Factors from Molecular Structures Anal. Chem. 62 7 683 689 2012 10.1021/ac00206a007
  27. Wei , Q. , Oestergaard , K. , Porter , S. , Ichiro , A. et al. Real-Time Measuring System for Engine Exhaust Solid Particle Number Emission - Design and Performance SAE Technical Paper Series, SAE 2006 World Congress & Exhibition Apr. 3, 2006 Warrendale, PA 2006
  28. Birmili , W. , Heinke , K. , Pitz , M. , Matschullat , J. et al. Particle Number Size Distributions in Urban Air Before and After Volatilisation Atmos. Chem. Phys. 10 10 4643 4660 2010 10.5194/acp-10-4643-2010
  29. Tikkanen , J. , Janka , K. , Rostedt , A. , Röbel , M. et al. Dilution Artifacts. A Significant Source of Error from Absolute Concentration and Possibly Difficult to Reproduce. PMP vs. Raw Exhaust. ETH-Conference on Combustion Generated Nanoparticles, 17th ETH-Conference on Combustion Generated Nanoparticles Zürich, Switzerland June 23-26 2013
  30. AVL List GmbH AVL Condensation Particle Counter: Product Guide 2016
  31. TSI GmbH Engine Exhaust Particle Sizer (EEPS) Spectrometer Model 3090/3090AK: Operation and Service Manual, Revision K 2017
  32. AVL Emission Test Systems GmbH 2017
  33. COMMISSION OF THE EUROPEAN COMMUNITIES
  34. Gunkel , M. , Frensch , M. , Robota , A. , and Gelhausen , R. Innermotorische Emissionsreduzierung Zusammenhang zwischen Partikelemissionen und Ölverbrauch MTZ Motortech Z 79 7-8 46 51 2018 10.1007/s35146-018-0044-4
  35. Jückstock , R. Perspektiven zur Reibungsreduzierung im Grundmotor MTZ Motortech Z 75 15 114 119 2014 10.1007/s35146-014-0421-6

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