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A study on performance, emission and combustion characteristics of diesel engine powered by nano-emulsion of waste orange peel oil biodiesel

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  • Kumar, AR. Mahesh
  • Kannan, M.
  • Nataraj, G.

Abstract

The current work aims at assessing the single cylinder, diesel engine fueled with nano-emulsion of orange peel oil biodiesel. The orange oil was elicited from orange peels through solvent extraction method then converted into methyl ester. By using the solvent extraction method, the orange peel oil (Limonene) yield was achieved up to 82.3%. Later, nanofluid was prepared in two different concentrations by doping 50 and 100 ppm of TiO2 nanoparticles. The orange oil biodiesel nano-emulsions namely OOME-T50 and OOME-T100 were prepared with the proportion of 88% of pure orange oil methyl ester, 10% of TiO2 nanofluid and 2% of span-80 as a surfactant. Experiments were performed with prepared fuels (pure OOME, OOME-T50 and OOME-T100) in a test engine and its results were discussed. The BTE of the engine increased up to 1.4% and 3.0% with OOME OOME-T50 and OOME-T100 fuels when correlated with pure OOME fuel. However, neat diesel fuel indicates maximum BTE at peak load condition. Significant reduction of about 24.2%, 9.7%, 18.4%, 16.0% in smoke, NOx, CO and HC were observed for OOME-T100 nano-emulsion fuel as correlated to pure OOME at peak load. Also, it can be noted that the cylinder peak pressure and heat release rate were increased for OOME nano-emulsion fuels when compared to pure OOME at greatest power output.

Suggested Citation

  • Kumar, AR. Mahesh & Kannan, M. & Nataraj, G., 2020. "A study on performance, emission and combustion characteristics of diesel engine powered by nano-emulsion of waste orange peel oil biodiesel," Renewable Energy, Elsevier, vol. 146(C), pages 1781-1795.
  • Handle: RePEc:eee:renene:v:146:y:2020:i:c:p:1781-1795
    DOI: 10.1016/j.renene.2019.06.168
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    References listed on IDEAS

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    1. Chauhan, Bhupendra Singh & Kumar, Naveen & Cho, Haeng Muk, 2012. "A study on the performance and emission of a diesel engine fueled with Jatropha biodiesel oil and its blends," Energy, Elsevier, vol. 37(1), pages 616-622.
    2. Venu, Harish & Subramani, Lingesan & Raju, V. Dhana, 2019. "Emission reduction in a DI diesel engine using exhaust gas recirculation (EGR) of palm biodiesel blended with TiO2 nano additives," Renewable Energy, Elsevier, vol. 140(C), pages 245-263.
    3. Subramani, Lingesan & Parthasarathy, M. & Balasubramanian, Dhinesh & Ramalingam, KrishnaMoorthy, 2018. "Novel Garcinia gummi-gutta methyl ester (GGME) as a potential alternative feedstock for existing unmodified DI diesel engine," Renewable Energy, Elsevier, vol. 125(C), pages 568-577.
    4. Vallinayagam, R. & Vedharaj, S. & Yang, W.M. & Lee, P.S. & Chua, K.J.E. & Chou, S.K., 2013. "Combustion performance and emission characteristics study of pine oil in a diesel engine," Energy, Elsevier, vol. 57(C), pages 344-351.
    5. Wan Ghazali, Wan Nor Maawa & Mamat, Rizalman & Masjuki, H.H. & Najafi, Gholamhassan, 2015. "Effects of biodiesel from different feedstocks on engine performance and emissions: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 51(C), pages 585-602.
    6. Purushothaman, K. & Nagarajan, G., 2009. "Performance, emission and combustion characteristics of a compression ignition engine operating on neat orange oil," Renewable Energy, Elsevier, vol. 34(1), pages 242-245.
    7. Venu, Harish & Raju, V. Dhana & Subramani, Lingesan, 2019. "Combined effect of influence of nano additives, combustion chamber geometry and injection timing in a DI diesel engine fuelled with ternary (diesel-biodiesel-ethanol) blends," Energy, Elsevier, vol. 174(C), pages 386-406.
    8. Lešnik, Luka & Vajda, Blaž & Žunič, Zoran & Škerget, Leopold & Kegl, Breda, 2013. "The influence of biodiesel fuel on injection characteristics, diesel engine performance, and emission formation," Applied Energy, Elsevier, vol. 111(C), pages 558-570.
    9. Rajasekar, E. & Selvi, S., 2014. "Review of combustion characteristics of CI engines fueled with biodiesel," Renewable and Sustainable Energy Reviews, Elsevier, vol. 35(C), pages 390-399.
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