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Performance Evaluation of Tractor Engine Using Waste Vegetable Oil Biodiesel for Agricultural Purpose

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Restaurants and food processors that frequently utilize frying oils can provide waste vegetable oil for free or for a small price. To compare the use of OAME to fossil diesel on the performance of the 67 kW Kubota tractor diesel engine, the methyl ester of oleic acid methyl ester (OAME) biodiesel was created from used vegetable oil using the transesterification process. The OAME gasoline was used straight up. The engine’s performance parameters and key indications, such as the indicated torque, brake torque, indicated power, fuel consumption of the braking force brake (BSFC), and exhaust gas emissions, were determined. The choice of a certain biofuel made from a specific source is primarily based on its economic viability and availability where it is utilized.
Słowa kluczowe
Twórcy
  • College of Engineering, AL-Qasim Green University, 51031, Babylon, Iraq
autor
  • College of Engineering, AL-Qasim Green University, 51031, Babylon, Iraq
  • College of Engineering, AL-Qasim Green University, 51031, Babylon, Iraq
Bibliografia
  • 1. Devarajan, Y., Mahalingam, A., Munuswamy, D.B., Arunkumar, T. 2018. Combustion, performance, and emission study of a research diesel engine fueled with palm oil biodiesel and its additive. Energy & Fuels, 32(8), 8447–8452.
  • 2. Emaish, H., Abualnaja, K.M., Kandil, E.E., Abdelsalam, N.R. 2021. Evaluation of the performance and gas emissions of a tractor diesel engine using blended fuel diesel and biodiesel to determine the best loading stages. Scientifi c Reports, 11(1), 1–12.
  • 3. Gad, M.S., EL-Seesy, A.I., Hashish, H.M.A., He, Z., Alshaer, W.G. 2021. Combustion and emissions aspects of a diesel engine working with sheep fat oil biodiesel-diesel blends. Case Studies in Thermal Engineering, 26, 101162.
  • 4. Gonca, G. 2014. Investigation of the eff ects of steam injection on performance and NO emissions of a diesel engine running with ethanol–diesel blend. Energy Conversion and Management, 77, 450–457.
  • 5. Gupta, H.N. 2012. Fundamentals of internal combustion engines. PHI Learning Pvt. Ltd.
  • 6. Hasan, A.B.U.S., Kumar, A., Tripathi, R.K., Ranjan, S. 2021. Performance And Emission Analysis Of Microalgae Biofuel-Diesel Blends In Internal Combustion Engine.
  • 7. Jagadevkumar, A.P., Pravin, V.K. 2020. Evaluation of performance and emission characeristics of heterotrophic chlorella protothecoides microalgae biodiesel and its blends with diesel in a direct injection diesel engine. Journal of Physics: Conference Series, 1473(1), 12043.
  • 8. Liu, Z., Yang, X., Yang, X., Zhai, H., Duan, Z. 2022. Performance Evaluation on the In-Cylinder Heat Transfer of a Reciprocating Compressor using CO2 as a Working Fluid. Journal of Thermal Science, 31(5), 1518–1530. https://doi.org/10.1007/s11630-022-1456-5
  • 9. Mahalingam, A., Munuswamy, D.B., Devarajan, Y., Radhakrishnan, S. 2018. Emission and performance analysis on the effect of exhaust gas recirculation in alcohol-biodiesel aspirated research diesel engine. Environmental Science and Pollution Research, 25(13), 12641–12647.
  • 10. Mata, T.M., Mendes, A.M., Caetano, N.S., Martins, A.A. 2014. Properties and sustainability of biodiesel from animal fats and fish oil. Chemical Engineering Transactions, 38, 175–180.
  • 11. Murillo, S., Miguez, J.L., Porteiro, J., Granada, E., Moran, J.C. 2007. Performance and exhaust emissions in the use of biodiesel in outboard diesel engines. Fuel, 86(12–13), 1765–1771.
  • 12. Nguyen, T.N., Khoa, N.X., Tuan, L.A. 2021. The Correlation of Biodiesel Blends with the Common Rail Diesel Engine’s Performance and Emission Characteristics. Energies, 14(11), 2986.
  • 13. Nguyen, T., Pham, M., Le Anh, T. 2020. Spray, combustion, performance and emission characteristics of a common rail diesel engine fueled by fish-oil biodiesel blends. Fuel, 269, 117108.
  • 14. Rajan, K., Senthil Kumar, K.R., Rajaram Narayanan, M., Mohanavel, V. 2021. Impact of nozzle opening pressure on the performance and emission behaviours of the CI engine using yellow oleander biodiesel. International Journal of Ambient Energy, 42(13), 1499–1505.
  • 15. Ravikumar, R., Kiran, K., Kumar, M.H., Hebbar, G.S., Shetty, A.S.D. 2021. A Comparative Analysis of Biodiesel Properties Derived from Meat Stall Wastes through Optimized Parameters. IOP Conference Series: Materials Science and Engineering, 1065(1), 12005.
  • 16. Roy, M.M., Islam, M.S., Alam, M.N. 2021. Biodiesel from crude tall oil and its NOx and aldehydes emissions in a diesel engine fueled by biodiesel-diesel blends with water emulsions. Processes, 9(1), 126.
  • 17. Shepel, O., Matijošius, J., Rimkus, A., Duda, K., Mikulski, M. 2021. Research of parameters of a compression ignition engine using various fuel mixtures of hydrotreated vegetable oil (Hvo) and fatty acid esters (fae). Energies, 14(11), 3077.
  • 18. Srinivasan, G.R., Jambulingam, R. 2018. Comprehensive study on biodiesel produced from waste animal fats-a review. Journal of Environmental Science and Technology, 11(3), 157–166.
  • 19. Zhang, Z., Jiaqiang, E., Deng, Y., Pham, M., Zuo, W., Peng, Q., Yin, Z. 2018. Effects of fatty acid methyl esters proportion on combustion and emission characteristics of a biodiesel fueled marine diesel engine. Energy Conversion and Management, 159, 244–253.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-133e1ffa-e16d-4039-936f-b76604efa617
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