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Research Article

The effects of fuel injection pressure on combustion and emission characteristics of a diesel engine using frying oil methyl ester

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Pages 7436-7452 | Received 27 Jun 2019, Accepted 21 Sep 2019, Published online: 10 Oct 2019

References

  • Ahmet, N. O., M. Canakci, A. Türkcan, and S. Cenk. 2009. Performance and combustion characteristics of a DI diesel engine fueled with waste palm oil and canola oil methyl esters. Fuel 88:629–36. doi:10.1016/j.fuel.2008.09.023.
  • Ashok, B., K. Nanthagopal, A. K. Jeevanantham, P. Bhowmick, D. Malhotra, and P. Agarwal. 2017a. An assessment of calophyllum inophyllum biodiesel fuelled diesel engine characteristics using novel antioxidant additives. Energy Conversion and Management 148:935–43. doi:10.1016/j.enconman.2017.06.049.
  • Ashok, B., K. Nanthagopal, R. T. K. Raj, J. P. Bhasker, and D. S. Vignesh. 2017b. Influence of injection timing and exhaust gas recirculation of a calophyllum inophyllum methyl ester fuelled CI engine. Fuel Processing Technology 167:18–30. doi:10.1016/j.fuproc.2017.06.024.
  • Ashok, B., K. Nanthagopal, B. Saravanan, K. Azad, B. S. Deepam Patel, and R. A. Ramasamy. 2019a. Study on isobutanol and calophyllum inophyllum biodiesel as a partial replacement in CI engine applications. Fuel 235:984–94. doi:10.1016/j.fuel.2018.08.087.
  • Ashok, B., M. Kasianantham Nanthagopal, S. Kumar, A. Ramasamy, D. Patel, S. Balasubramanian, and S. Balakrishnan. 2019b. An investigation on CI engine characteristics using pork lard methyl ester at various injection pressures and injection timings. International Journal of Green Energy 16 (11):834–46. doi:10.1080/15435075.2019.1641107.
  • Atmanli, A. 2016. Effects of a cetane improver on fuel properties and engine characteristics of a diesel engine fueled with the blends of diesel, hazelnut oil and higher carbon alcohol. Fuel 15 (172):209–17.
  • Bragadeshwaran, A., N. Kasianantham, S. Balusamy, S. K. Muniappan, D. M. S. R. Pravin, and R. Subbarao. 2018. Mitigation of NOx and smoke emissions in a diesel engine using novel emulsified lemon peel oil biofuel. Environmental Science and Pollution Research 25 (25):25098–114. doi:10.1007/s11356-018-2574-1.
  • Cecrle, E., C. Depcik, A. Duncan, J. Guo, M. Mangus, and E. Peltier. 2012. Investigation of the effects of biodiesel feedstock on the performance and emissions of a single-cylinder diesel engine. Energy & Fuels : an American Chemical Society Journal 26 (4):2331–41. doi:10.1021/ef2017557.
  • Demirbas, A. 2006. Global renewable energy resources. Energy Sources, Part A: Recovery, Utilization, and Environmental Effect 28 (8):779–92. doi:10.1080/00908310600718742.
  • Enweremadu, C. C., and H. L. Rutto. 2010. Combustion, emission and engine performance characteristics of usedcooking oil biodiesel - a review. Renewable and Sustainable Energy Reviews 14 (9):2863–73. doi:10.1016/j.rser.2010.07.036.
  • Gnanasekaran, S., N. Saravanan, and M. Ilangkumaran. 2016. Influence of injection timing on performance, emission and combustion characteristics of a DI diesel engine running on fish oil biodiesel. Energy 116:1218–29. doi:10.1016/j.energy.2016.10.039.
  • Gumus, M. 2010. A comprehensive experimental investigation of combustion and heat release characteristics of biodiesel (hazelnut kernel oil methyl ester) fueled direct injection compression ignition engine. Fuel 89:2802–14. doi:10.1016/j.fuel.2010.01.035.
  • Gumus, M., C. Sayin, and M. Canakci. 2012. The impact of fuel injection pressure on the exhaust emissions of a direct injection diesel engine fueled with biodiesel–Diesel fuel blends. Fuel 95:486–94. doi:10.1016/j.fuel.2011.11.020.
  • Ilkilic, C., and R. Behcet. 2010. The reduction of exhaust emissions from a diesel engine by using a biodiesel blend. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 32:838–50.
  • Jaichandar, S., and K. Annamalai. 2013. The combined impact of injection pressure and combustion chamber geometry on the performance of a biodiesel-fueled diesel engine. Energy 55:330–9.
  • Kannan, G.R., and R. Anand. 2012. Effect of injection pressure and injection timing on DI diesel engine fuelled with biodiesel from waste cooking oil. Biomass and Bioenergy 46:343–52. doi:10.1016/j.biombioe.2012.08.006.
  • Lakshminarayanan, P. A., N. Nayak, S. V. Dingare, and A. D. Dani. 2002. Predicting hydrocarbon emissions from direct injection diesel engines. ASME Journal of Engineering for Gas Turbine and Power 124 (3):708–16. doi:10.1115/1.1456091.
  • Mohan, B., W. M. Yang, V. Raman, V. Sivasankaralingam, and S. K. Chou. 2014. Optimization of the biodiesel-fueled engine to meet emission standards through varying nozzle opening pressure and static injection timing. Applied Energy 130. doi:10.1016/j.apenergy.2014.02.033.
  • Mueller, C. J., A. L. Boehman, and G. C. Martin. 2009. An experimental investigation of the origin of increased NOx emissions when fueling a heavy-duty compression ignition engine with soy biodiesel. SAE International Journal of Fuels, Lubricants 2:789–816. doi:10.4271/2009-01-1792.
  • Muralidharan, K., and D. Vasudevan. 2011. Performance, emission and combustion characteristics of a variable compression ratio engine using methyl esters of waste cooking oil and diesel blends. Applied Energy 88 (11):3959–68. doi:10.1016/j.apenergy.2011.04.014.
  • Nanthagopal, K., B. Ashok, and R. T. Karuppa Raj. 2016. Influence of fuel injection pressures on Calophyllum inophyllum methyl ester fuelled direct injection diesel engine. Energy Conversion and Management 116:165–73. Elsevier Ltd. doi:10.1016/j.enconman.2016.03.002.
  • Nanthagopal, K., B. Ashok, B. Saravanan, S. M. Korah, and S. Chandra. 2018b. Effect of next generation higher alcohols and calophyllum inophyllum methyl ester blends in diesel engine. Journal of Cleaner Production 180:50–63. doi:10.1016/j.jclepro.2018.01.167.
  • Nanthagopal, K., B. Ashok, B. Saravanan, D. Patel, B. Sudarshan, and R. A. Ramasamy. 2018a. An assessment on the effects of 1-pentanol and 1-butanol as additives with calophyllum inophyllum biodiesel. Energy Conversion and Management 158:70–80. doi:10.1016/j.enconman.2017.12.048.
  • Nanthagopal, K., R. T. K. Raj, B. Ashok, T. Elango, and S. V. Saravanan. 2019. Influence of exhaust gas recirculation on combustion and emission characteristics of diesel engine fuelled with 100% waste cooking oil methyl ester. Waste and Biomass Valorization 10 (7):2001–14. doi:10.1007/s12649-018-0194-0.
  • Rakopoulos, C. D., E. G. Giakoumis, and A. M. Dimaratos. 2012. Characteristics of performance and emissions in a high-speed direct injection diesel engine fueled with diethyl ether/diesel fuel blends. Energy 43:214–24. doi:10.1016/j.energy.2012.04.039.
  • Rosca, R., P. Cârlescu, R. Edward, and M. Gheorghe. 2009. Fueling a D.I. agricultural diesel engine with waste oil biodiesel: Effects over injection, combustion and engine characteristics. Energy Conversion and Management 50:2158–66. doi:10.1016/j.enconman.2009.04.026.
  • Sayeed, I., S. M. Rahman, H. H. Masjuki, M. Varman, and M. A. Kalam. 2015. Effect of dynamic injection pressure on performance, emission and combustion characteristics of a compression ignition engine. Renewable and Sustainable Energy Reviews 52:1205–11. doi:10.1016/j.rser.2015.07.166.
  • Sharma, A., Y. Singh, and N. Arul Kumar. 2019. Effect of fuel injection pressure and timing on polanga (calophyllum inophyllum) biodiesel blends for engine performance and emissions analysis. Energy Sources, Part A: Recovery, Utilization and Environmental Effects 1–12. doi:10.1080/15567036.2019.1583696.
  • Shehata, M. S., A. Attia, and M. Abdel Razek. 2015. Corn and soybean biodiesel blends as alternative fuels for diesel engine at different injection pressures. Fuel 161:49–58. doi:10.1016/j.fuel.2015.08.037.
  • Sudhir, C. V., N. Y. Sharma, and P. Mohanan. 2007. Potential of waste cooking oils as a biodiesel feedstock. Emirates.Journal of Engineering Research 12 (3):69–75.
  • Venu, H., and V. Madhavan. 2017. Influence of diethyl ether (DEE) addition in ethanol biodiesel- diesel (EBD) and methanol-biodiesel-diesel (MBD) blends in a diesel engine. Fuel 189:377–90. doi:10.1016/j.fuel.2016.10.101.
  • Yesilyurt, M. K. 2008. The effects of the fuel injection pressure on the performance and emission characteristics of a diesel engine fuelled with waste cooking oil biodiesel-diesel blends. Renewable Energy. doi:10.1016/j.Rene.2018.08.024.
  • Yilmaz, N., F. M. Vigil, K. Benalil, S. M. Davis, and A. Calva. 2014. Effect of biodiesel–Butanol fuel blends on emissions and performance characteristics of a diesel engine. Fuel 135:46–50. doi:10.1016/j.fuel.2014.06.022.

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