THE EFFECTS OF ALCOHOL ADDITION TO FUEL ON PISTON WEAR IN A TWO-STROKE ENGINE

THE EFFECTS OF ALCOHOL ADDITION TO FUEL ON PISTON WEAR IN A TWO-STROKE ENGINE

In this study, the effects of 20% methanol (BM20) and ethanol (BE20) addition to the fuel of a motor scythe with a two-stroke gasoline engine, which is also used as a hand tool, were examined. The effects of adding alcohol to gasoline on fuel consumption value, the amount of deluge release on the piston, piston overflows and exhaust emissions were investigated. The motor scythe was operated for 50 hours and 100 hours to investigate the amount of wear. With the addition of methanol and ethanol, it was determined that the fuel consumption value and wear increased and the amount of hallucinations decreased compared to gasoline. In terms of emission values, reduction in CO and HC emissions with alcohol use, reduction in CO2 emissions with BM20 fuel mixture, increase with BE20 fuel mixture was determined.

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  • [1] Bayraç NH, Çelikay F, Çildir M. Küreselleşme Sürecinde Sürdürülebilir Enerji Politikaları. Ekin Publishing, Bursa 2018.
  • [2] MAPAS. Operation and maintenance conditions of two-stroke engines. http://mapas.com.tr/blog/2-zamanli-benzinli-motor-calistirma-ve-bakimi/304, (Access History: 26.06. 2019).
  • [3] Kaleli H. Wear, lubrication and cooling in internal combustion engines. https://www.yeniatmaca.com/blogs/icten-yanmali-motorlarda-asinma-yaglama-ve-sogutma.pdf, (Access History: 26.06. 2019).
  • [4] Onurbaşavcıoğlu A, Atasoy ZD, Türker U, Koçtürk D. Tarımsal Kökenli Yenilebilir Enerjiler: Biyoyakıtlar. Nobel Publishing, Ankara, 2013.
  • [5] Balki MK, Sayın C, Çanakcı M. Experimental Investigation of the effect of different Alcohol fuels on the performance, emission and combustion characteristics of a spark plug-fired engine. 12. International Combustion Symposium, (ICS 2012), June pp. 228-234.
  • [6] Thakur AK, Kaviti AK, Mehra R, Mer KKS. Progress in performance analysis of ethanol-gasoline blend on SI engine, Renewable and Sustainable Energy Reviews 2017; 69:324-340.
  • [7] Wua X, Daniel R, Tianb G, Xub H, Huanga Z, Richardson D. Dual-injection: The Flexible, Bi-Fuel Concept for Spark-Ignition Engines Fuelled with Various Gasoline and Biofuel Blends. Applied Energy 2011; 88: 2305-2314.
  • [8] Yüksel T, Temizer İ, Can İ, Koca F. Effects of using heated bioethanol as a secondary fuel in a gasoline engine. Firat University Journal of Engineering Sciences 2019; 31: 67-77.
  • [9] Zulfattah ZM, Zulkifli NWM, Masjuki HH, Harith MH, Syahir AZ, Norain I, Jumaidin R, Yusoff MNAM, Azham A, Jamshaid M, Arslan A. Effect of bio-based lubricant towards emissions and engine breakdown due to spark plug fouling in a two-stroke engine. Journal Of Cleaner Production 2019; 221: 215-223.
  • [10] Raviteja S, Ramakrishna PA, Ramesh A, Performance Enhancement of a Small Two-Stroke Engine Using Nitromethane Blends. Journal of Propulsion and Power 2019; 35:1-10.
  • [11] STHİL. Features of Motor Scythe. https://www.sadal.com.tr/Product?productId=211, (Access History: 26.06.2019).
  • [12] OPET. Technical Properties of Lubricating Oil. http://www.opetfuchs.com.tr/urun/fulltrac-2t, (Access History: 26.06.2019).
  • [13] OPET. Engine fuel characteristics https://www.opet.com.tr/files/PDF/Urun/Ultra-Force-95-Oktan-urun-teknik-ozellikleri.pdf, (Access History: 26.06.2019).
  • [14] Özer S. Use of alcohols as alternative fuels in internal combustion engines. Journal Of Engineering And Architecture 2014; 19: 97-114.
  • [15] Çelik M, Solmaz H, Yücesu HS, Yılmaz E. Investigation of the effects of N-heptane contribution to canola methyl ester on engine performance and combustion characteristics. Journal of Thermal Science and Technology 2016;36:9-16.
  • [16] Geetesh G, Bhupendra S, Chauhan S, Kumar M, Amit D, Haeng MC. Effect of varying biogas mass flow rate on performance and emission characteristics of a diesel engine fuelled with blends of n-butanol and diesel. Journal of Thermal Analysis and Calorimetry 2019; 138:472, 1-14.
  • [17] Huang H, Teng W, Li Z, Liu Q, Wang Q, Pan M. Improvement of emission characteristics and maximum pressure rise rate of diesel engines fueled with n-butanol/PODE3–4/diesel blends at high injection pressure. Energy Convers Manag. 2017;152:45–56.
  • [18] Giakoumis EG, Rakopoulos CD, Dimaratos AM, Rakopoulas DC. Exhaust emission with ethanol or n-butanol diesel fuel blends during transient operation: a review. Renew Sustain Energy Rev. 2013;17:170–90.
  • [19] Akçay M, Özer S. Experimental investigation on performance and emission characteristics of a CI diesel engine fueled with fusel oil/diesel fuel blends, Energy Sources, Part A: Recovery, Utilization and Environmental Effects, https://doi.org/10.1080/15567036.2019.1689317, (2020).
  • [20] Yusoff MNAM, Zulkifli NWM, Masjuki HH, Harith MH, Syahir AZ, Kalam MA, Mansor MF, Azham A, Khuong LS. Performance and emission characteristics of a spark ignition engine fuelled with butanol isomer-gasoline blends. Transportation Research Part D: Transport and Environment, 2017; 57:23-38, https://doi.org/10.1016/j.trd.2017.09.004
  • [21] Lin CY, Li RJ. Engine performance and emission characteristics of marine fish-oil biodiesel produced from the discarded parts of marine fish. Fuel Processing Technology 2009; 90:883–888.