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Diesel oil with bioethanol as a fuel for compression-ignition engines

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  • Odziemkowska, Małgorzata
  • Matuszewska, Anna
  • Czarnocka, Joanna

Abstract

The research focussed on working out the stable, homogenous ethanol-diesel oil fuel containing co-solvent, with properties close to these required for commercial diesel oil. The influence of bioethanol content on properties of bioethanol-diesel oil blends was examined. Two different diesel oils were tested: diesel oil containing 7% V/V of fatty acids methyl esters and diesel oil without esters. Bioethanol content ranged from 5% V/V to 30% V/V. Because of the poor miscibility, the action of different alcoholic co-solvents at 5% and 10% volume concentrations was estimated. The physical stability of blends was tested visually and with the use of multiple light scattering technique. Admixture of bioethanol deteriorated physicochemical and functional properties of the fuels, therefore some additives improving these properties were investigated. On the base of the research results two formulas of fuels containing diesel oil (without and with 7% V/V of fatty acids methyl esters), 15% V/V bioethanol, 5% V/V co-solvent (2-ethyl-1-hexanol) and appropriate additives were prepared and tested on chassis dynamometer with Ford Escort 1.8 TD. The effect of tested fuels on engine performance and emissions was determined. Experimental results showed the engine power and torque loss over 10% in case of diesel-bioethanol-co-solvent mixture. Presence of fatty acids methyl esters caused further deterioration of these parameters and had a negative influence on engine running. Moreover, esters contributed to an increase in hydrocarbons, carbon monoxide emissions in comparison with diesel oil. The only advantage of this fuel was reduction of particulate matters emission. The fuel without fatty acids methyl esters also reduced emission of particulate matters while emissions of other tested harmful substances were at the same level as for diesel oil.

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  • Odziemkowska, Małgorzata & Matuszewska, Anna & Czarnocka, Joanna, 2016. "Diesel oil with bioethanol as a fuel for compression-ignition engines," Applied Energy, Elsevier, vol. 184(C), pages 1264-1272.
  • Handle: RePEc:eee:appene:v:184:y:2016:i:c:p:1264-1272
    DOI: 10.1016/j.apenergy.2016.07.069
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    References listed on IDEAS

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    1. de Freitas, Luciano Charlita & Kaneko, Shinji, 2011. "Ethanol demand under the flex-fuel technology regime in Brazil," Energy Economics, Elsevier, vol. 33(6), pages 1146-1154.
    2. Chollacoop, Nuwong & Saisirirat, Peerawat & Sukkasi, Sittha & Tongroon, Manida & Fukuda, Tuenjai & Fukuda, Atsushi & Nivitchanyong, Siriluck, 2013. "Potential of greenhouse gas emission reduction in Thai road transport by ethanol bus technology," Applied Energy, Elsevier, vol. 102(C), pages 112-123.
    3. Imran, A. & Varman, M. & Masjuki, H.H. & Kalam, M.A., 2013. "Review on alcohol fumigation on diesel engine: A viable alternative dual fuel technology for satisfactory engine performance and reduction of environment concerning emission," Renewable and Sustainable Energy Reviews, Elsevier, vol. 26(C), pages 739-751.
    4. Park, Su Han & Cha, Junepyo & Lee, Chang Sik, 2012. "Impact of biodiesel in bioethanol blended diesel on the engine performance and emissions characteristics in compression ignition engine," Applied Energy, Elsevier, vol. 99(C), pages 334-343.
    5. Hulwan, Dattatray Bapu & Joshi, Satishchandra V., 2011. "Performance, emission and combustion characteristic of a multicylinder DI diesel engine running on diesel–ethanol–biodiesel blends of high ethanol content," Applied Energy, Elsevier, vol. 88(12), pages 5042-5055.
    6. Rajesh Kumar, B. & Saravanan, S., 2016. "Use of higher alcohol biofuels in diesel engines: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 60(C), pages 84-115.
    7. Balat, Mustafa & Balat, Havva, 2009. "Recent trends in global production and utilization of bio-ethanol fuel," Applied Energy, Elsevier, vol. 86(11), pages 2273-2282, November.
    8. Karthikeyan, B. & Srithar, K., 2011. "Performance characteristics of a glowplug assisted low heat rejection diesel engine using ethanol," Applied Energy, Elsevier, vol. 88(1), pages 323-329, January.
    9. Shadidi, Behdad & Yusaf, Talal & Alizadeh, Hossein Haji Agha & Ghobadian, Barat, 2014. "Experimental investigation of the tractor engine performance using diesohol fuel," Applied Energy, Elsevier, vol. 114(C), pages 874-879.
    10. Li, De-gang & Zhen, Huang & Xingcai, Lŭ & Wu-gao, Zhang & Jian-guang, Yang, 2005. "Physico-chemical properties of ethanol–diesel blend fuel and its effect on performance and emissions of diesel engines," Renewable Energy, Elsevier, vol. 30(6), pages 967-976.
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