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Evaluation analysis of particulate relevant emission of a diesel engine running on fossil diesel and different biofuels

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  • Szabados, György
  • Bereczky, Ákos
  • Ajtai, Tibor
  • Bozóki, Zoltán

Abstract

Air pollutants derived from diesel engines have more and more dangerous effect on the nature and on the built environment as well. One of the most important emission-component of a diesel engine running on conventional diesel is particulate matter. For measuring particulate matter there are many different widely used measurement methods. Using biofuel in diesel engines also causes emission of particulate matter. The basic aim of our work was to investigate and to evaluate the conventional biodiesel's and the new type TBK-Biodiesel's effect on the particulate relevant emission of a compression ignition engine. Particulate relevant emission mean in this case the four different measurement methods like filter smoke number, opacity, particulate mass and particulate number. With a rising blending rate of the - in internal combustion engine useable - bio derived fuels (standardized biodiesel and non-standardized TBK-biodiesel) to fossil diesel the particulate relevant emission of the engine changes significantly. The tendencies in particulate relevant emission with growing blending rate are different among the measurement methods. Because of this situation biofuels cannot be evaluated clearly compared to fossil diesel in point of view of particulate relevant emission.

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  • Szabados, György & Bereczky, Ákos & Ajtai, Tibor & Bozóki, Zoltán, 2018. "Evaluation analysis of particulate relevant emission of a diesel engine running on fossil diesel and different biofuels," Energy, Elsevier, vol. 161(C), pages 1139-1153.
  • Handle: RePEc:eee:energy:v:161:y:2018:i:c:p:1139-1153
    DOI: 10.1016/j.energy.2018.07.154
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    References listed on IDEAS

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    1. Wang, Ying & Liu, Hong & Lee, Chia-Fon F., 2016. "Particulate matter emission characteristics of diesel engines with biodiesel or biodiesel blending: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 64(C), pages 569-581.
    2. Agarwal, Avinash Kumar & Gupta, Tarun & Kothari, Abhishek, 2011. "Particulate emissions from biodiesel vs diesel fuelled compression ignition engine," Renewable and Sustainable Energy Reviews, Elsevier, vol. 15(6), pages 3278-3300, August.
    3. Tsang, Eric W. K., 2014. "Old and New," Management and Organization Review, Cambridge University Press, vol. 10(03), pages 390-390, November.
    4. Ali, Obed M. & Mamat, Rizalman & Abdullah, Nik R. & Abdullah, Abdul Adam, 2016. "Analysis of blended fuel properties and engine performance with palm biodiesel–diesel blended fuel," Renewable Energy, Elsevier, vol. 86(C), pages 59-67.
    5. Szabados, György & Bereczky, Ákos, 2018. "Experimental investigation of physicochemical properties of diesel, biodiesel and TBK-biodiesel fuels and combustion and emission analysis in CI internal combustion engine," Renewable Energy, Elsevier, vol. 121(C), pages 568-578.
    6. Varuvel, Edwin Geo & Mrad, Nadia & Tazerout, Mohand & Aloui, Fethi, 2012. "Experimental analysis of biofuel as an alternative fuel for diesel engines," Applied Energy, Elsevier, vol. 94(C), pages 224-231.
    7. Shahir, V.K. & Jawahar, C.P. & Suresh, P.R., 2015. "Comparative study of diesel and biodiesel on CI engine with emphasis to emissions—A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 45(C), pages 686-697.
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