Araştırma Makalesi

Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions

Cilt: 14 Sayı: 1 25 Mart 2025
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Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions

Öz

The power produced by the combustion of fossil fuels in internal combustion engines is transferred to the powertrain, and this generated power causes carbon dioxide (CO2) and particulate matter emissions. Systems that do not cause CO2 and other harmful emissions or cause less emissions are a strong alternative. In this context, methanol and natural gas are added to the engine to reduce emissions. In this study, engine performance and emissions were examined using three fuel mixtures. A two-cylinder gasoline engine was run using M20 fuel and natural gas was added at different rates from the engine manifold. The engine was operated at a constant 3000 rpm and using 6 different fuels (gasoline, M20, M20+50 g natural gas, M20+100 g natural gas, M20+150 g natural gas, M20+200 g natural gas), at different torque values (5, 10, 15 and 20 Nm) engine performance and emission values were compared. When fuel consumption is compared to gasoline fuel, the overall cycle average is 6% higher in M20, 3% higher in M20+50 and M20+100, 1% higher in M20+150 and 6% higher in M20+200, and emissions are reduced compared to gasoline in other fuels.

Anahtar Kelimeler

Kaynakça

  1. Schafer, A., Heywood, JB., Weiss, MA., Future fuel cell and internal combustion engine automobile technologies: a 25-year life cycle and fleet impact assessment, Energy, 31(12):2064-2087, 2006.
  2. Oh, S., Park, C., Kim, S., Kim, Y., Choi,Y., Kim, C., Natural gaseammonia dual-fuel combustion in spark-ignited engine with various airefuel ratios and split ratios of ammonia under part load condition, Fuel, 290:120095, 2021.
  3. Xie, Y., Li, Y., Zhao, Z., Dong, H., Wang, S., Liu, J., Microsimulation of electric vehicle energy consumption and driving range, Applied Energy, 267: 115081, 2020.
  4. Zhang, B., Carlson, RB., Smart, JG., Dufek, EJ., Liaw, B., Challenges of future high power wireless power transfer for light-duty electric vehicles technology and risk management, eTransportation, 2:100012, 2019.
  5. Inci, M., Büyük, M., Demir, MH., Ilbey, G., A review and research on fuel cell electric vehicles: topologies, power electronic converters, energy management methods, technical challenges, marketing and future aspects, Renewable and Sustainable Energy Reviews, 137:110648, 2021.
  6. Zhuang, W., Li, S., Zhang, X., Kum, D., Song, Z., Yin, G., A survey of powertrain configuration studies on hybrid electric vehicles, Applied Energy, 262:114553, 2020.
  7. Li, Y., Wang, S., Duan, X., Liu, S., Liu, J., Hu, S., Multi-objective energy management for Atkinson cycle engine and series hybrid electric vehicle based on evolutionary NSGA-II algorithm using digital twins, Energy Conversion and Managment, 230: 113788, 2021.
  8. Chen, Z., He, J., Chen, H., Wang, L., Geng, L., Experimental study of the effects of spark timing and water injection on combustion and emissions of a heavyduty natural gas engine, Fuel, 276:118025, 2020.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Otomotiv Yanma ve Yakıt Mühendisliği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

25 Mart 2025

Gönderilme Tarihi

26 Kasım 2024

Kabul Tarihi

19 Şubat 2025

Yayımlandığı Sayı

Yıl 2025 Cilt: 14 Sayı: 1

Kaynak Göster

APA
Akbıyık, T. (2025). Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions. International Journal of Automotive Engineering and Technologies, 14(1), 69-76. https://doi.org/10.18245/ijaet.1591576
AMA
1.Akbıyık T. Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions. International Journal of Automotive Engineering and Technologies. 2025;14(1):69-76. doi:10.18245/ijaet.1591576
Chicago
Akbıyık, Talip. 2025. “Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions”. International Journal of Automotive Engineering and Technologies 14 (1): 69-76. https://doi.org/10.18245/ijaet.1591576.
EndNote
Akbıyık T (01 Mart 2025) Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions. International Journal of Automotive Engineering and Technologies 14 1 69–76.
IEEE
[1]T. Akbıyık, “Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions”, International Journal of Automotive Engineering and Technologies, c. 14, sy 1, ss. 69–76, Mar. 2025, doi: 10.18245/ijaet.1591576.
ISNAD
Akbıyık, Talip. “Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions”. International Journal of Automotive Engineering and Technologies 14/1 (01 Mart 2025): 69-76. https://doi.org/10.18245/ijaet.1591576.
JAMA
1.Akbıyık T. Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions. International Journal of Automotive Engineering and Technologies. 2025;14:69–76.
MLA
Akbıyık, Talip. “Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions”. International Journal of Automotive Engineering and Technologies, c. 14, sy 1, Mart 2025, ss. 69-76, doi:10.18245/ijaet.1591576.
Vancouver
1.Talip Akbıyık. Examining the effect of adding natural gas to an engine using a gasoline-methanol mixture as fuel on engine performance and emissions. International Journal of Automotive Engineering and Technologies. 01 Mart 2025;14(1):69-76. doi:10.18245/ijaet.1591576