Open Access
Issue
EPJ Web Conf.
Volume 363, 2026
International Conference on Low-Carbon Development and Materials for Solar Energy (ICLDMS’26)
Article Number 01017
Number of page(s) 11
Section Energy Materials
DOI https://doi.org/10.1051/epjconf/202636301017
Published online 16 April 2026
  1. D. Saha, P. Majumder, B. Roy, and P. P. Kundu, “Effect of areca nut husk bio -additive on combustion, performance, and emission characteristics of a hydrogen enriched CRDI CI engine fueled with a plastic oil-ethanol-diesel blend,” vol. 153, 2025, doi: 10.1016/j.ijhydene.2025.150134. [Google Scholar]
  2. D. Saha, B. Roy, and P. P. Kundu, “A comprehensive investigation on the prospects of ternary blends of ethanolplastic grocery bag derived oil-diesel for CRDI CI engine: combustion, performance, and emission analysis,” 2025, doi: 10.1007/s10098-025-03162-4. [Google Scholar]
  3. D. M. Madhuvanesan and J. M. Babu, “Impact of nano cerium oxide addition with pyrolysis waste plastic oil on combustion, performance and emission characteristics of CRDI diesel engine,” vol. 6, no. 4, 2024, doi: 10.1088/2631-8695/ad923e. [Google Scholar]
  4. J. Jaiganesh, R. Ramasamy, and M. G. Gowthama Krishnan, “Exploring the synergistic potential of prosopis juliflora and waste plastic oil biodiesel through investigation of performance, combustion, and emission in a CRDI engine: A shift towards sustainable fuel,” vol. 184, pp. 720–735, 2024, doi: 10.1016/j.psep.2024.02.036. [Google Scholar]
  5. E. R. K. Rama Krishna Reddy and M. K. Pal, “Influence of hydrogen induction in a CRDI engine fuelled with water emulsified waste plastic oil blend,” vol. 49, pp. 1282–1293, 2024, doi: 10.1016/j.ijhydene.2023.09.025. [Google Scholar]
  6. T. Bothiraj, K. Boopathi, K. Kalaiselvan, A. Benham, and S. Mayakannan, “Experimental investigations on mechanical and wear behavior of waste marble dust and coconut fiber reinforced hybrid bio composites,” in Materials Today: Proceedings, 2022, pp. 2239–2242. [Google Scholar]
  7. T. Anand and S. Debbarma, “Influence of Fuel Injection Timing and Hydrogen Enrichment on Waste Plastic Oil: Performance, Combustion, and Emissions Analysis,” vol. 433, pp. 85–90, 2024, doi: 10.4028/p-pX49ib. [Google Scholar]
  8. A. V. K. Krishna Chaitanya and D. K. Mohanty, “Experimental investigation on the combustion, performance and emission characteristics of 1-pentanol blended waste plastic oil in a CRDI engine with EGR,” vol. 256, 2022, doi: 10.1016/j.energy.2022.124574. [Google Scholar]
  9. H. V Ganvir et al., “Monitoring Atomic Layer Deposition by Potentiodynamic Electrochemical Impedance Spectroscopy of Multielement Adlayers,” vol. 27, no. 3, pp. 172–181, 2024, doi: 10.14447/jnmes.v27i3.a02. [Google Scholar]
  10. R. Prasad et al., “Effect of Boost Pressure and Compression Ratio on the Performance and Emission Characteristics of Diethyl Ether Fuelled Engine,” vol. 17, no. 2, pp. 182–188, 2025, doi: 10.4273/ijvss.17.2.01. [Google Scholar]
  11. A. K. Das and T. Mohapatra, “Exergetic performance optimization and thermoeconomic analysis of a variable compression ratio diesel engine fueled with distilled plastic oil and diesel doped with nanogr aphene,” 2024, doi: 10.1177/09544089241229563. [Google Scholar]
  12. V. R. Khawale et al., “Study on Electrochemical Stability and Charge Transfer Efficiency for the Development of High-Performance Supercapacitors Using Iron Oxide (Fe2O3) Nanorods,” vol. 27, no. 3, pp. 163–171, 2024, doi: 10.14447/jnmes.v27i3.a01. [Google Scholar]
  13. K. Wathakit et al., “Characterization and impact of waste plastic oil in a variable compression ratio diesel engine,” vol. 14, no. 8, 2021, doi: 10.3390/en14082230. [Google Scholar]
  14. A. K. Das, M. R. Padhi, D. Hansdah, and A. K. Panda, “Optimization of Engine Parameters and Ethanol Fuel Additive of a Diesel Engine Fuelled with Waste Plastic Oil Blended Diesel,” vol. 4, no. 4, pp. 465–479, 2020, doi: 10.1007/s41660-020-00134-7. [Google Scholar]
  15. B. G. Rao, Y. D. Bharadwaz, and P. S. R. Krishna, “Characterisation of diethyl ether blended waste plastic oil used as a fuel in variable compression ratio engine - an experimental study,” vol. 24, pp. 44–51, 2020. [Google Scholar]
  16. P. P. Prasad Kumar, S. Pendyala, and S. K. Gugulothu, “Influence of the Metallic (SiO) and Non-metallic (Rice Husk) nano additives blended with 2-ethylhexyl nitrate on the Engine Characteristics of CRDI Diesel Engine,” vol. 15, no. 12, pp. 5149–5161, 2023, doi: 10.1007/s12633-023-02425-3. [Google Scholar]
  17. J. Ramachander, S. K. Gugulothu, G. R. Sastry, and B. Bhsker, “An experimental assessment on the influence of high fuel injection pressure with ternary fuel (diesel-mahua methyl ester-pentanol) on performance, combustion, and emission characteristics of common rail direct injection diesel engine,” vol. 29, no. 1, pp. 119–132, 2022, doi: 10.1007/s11356-021-13909-3. [Google Scholar]
  18. R. Dhairiyasamy and D. Gabiriel, “Performance and emission characteristics of Mahua oil biodiesel in low heat rejection diesel engines with retarded injection timing,” vol. 17, 2025, doi: 10.1016/j.ctta.2024.100158. [Google Scholar]
  19. S. J. D. Vijayakumar, S. Paulsingarayar, A. Augustine, K. Vetrivelkumar, and R. Rajendran, “Impact of compression ratio and effect of biodiesel blends in performance, combustion and emission characteristics of VCR DI diesel engine,” 2020, pp. 967–974. doi: 10.1016/j.matpr.2020.06.182. [Google Scholar]
  20. A. K. Das, S. S. Sahoo, and A. K. Panda, “Production of Waste Plastics Oil and Its Prospective Use in a Variable Compression CI Engine,” vol. 25, no. 3, 2021, doi: 10.1061/(ASCE)HZ.2153-5515.0000606. [Google Scholar]
  21. S. R. Srinivasa Reddy, H. R. Y. Venkata, D. Vallapudi, N. Narmatha, and A. R. Kumaravel, “Prediction of recital characteristics of a CI diesel engine operated by bio-fuel extracts from cotton seed oil, linseed oil and mahua seed oil using ANN method,” vol. 9, no. 2, pp. 366–376, 2023, doi: 10.18186/thermal.1284626. [Google Scholar]
  22. Prabhahar, M., Manohar, M., & Sendilvelan, S. (2012). Performance and emission characteristics of diesel engine with various injection pressures using biodiesel. Indian Journal of Science and Technology, 5(6), 2880–2884. [Google Scholar]
  23. Kotaiah, K., Periyasamy, P., & Prabhahar, M. (2020). Performance and emission characteristics of small agricultural diesel engine using Lemongrass oil and its diesel blends. Materials Today: Proceedings, 33, 658–662. https://doi.org/10.1016/j.matpr.2020.05.773 [Google Scholar]
  24. Krishnamoorthi, S., Prabhahar, M., Kumar, M. S., & Sendilvelan, S. (2018). Yield characteristic of biodiesel derived from used vegetable oil methyl ester (UVOME) blended with diesel, in the presence of sodium hydroxide (NAOH) and potassium hydroxide (KOH) catalyst, as alternative fuel for diesel engines. International Journal of Mechanical and Production Engineering Research and Development (IJMPERD), 8(1), 9–16. DOI: 10.24247/ijmperdfeb20182 [Google Scholar]
  25. Prabhahar, M., & Sangeetha, K. (2008). Experimental investigations on dual bio-fuel (pine biodiesel and palm biodiesel) blended with diesel on a single cylinder diesel engine. International Journal of Mechanical and Production Engineering Research and Development, 8(2), 87–92. V. Gnanamoorthi and M. Manickam, “Effect of DEE and MEA as additives on a CRDI diesel engine fueled with waste plastic oil blend,” vol. 44, no. 2, pp. 50165031, 2022, doi: 10.1080/15567036.2019.1657206. [Google Scholar]
  26. T. Anand and S. Debbarma, “Experimental Analysis of Hydrogen Enrichment in Waste Plastic Oil Blends for Dual-Fuel Common Rail Direct Injection Diesel Engines,” vol. 146, no. 1, 2024, doi: 10.1115/1.4063665. [Google Scholar]
  27. A. K. Das and A. K. Panda, “Improvement of performance and emission characteristic of waste plastic pyrolytic oil blended diesel fuel in variable compression diesel engine using graphene nano additive,” vol. 34, no. 1, pp. 212–229, 2023, doi: 10.1177/0958305X211060405. [Google Scholar]
  28. T. Anand and S. Debbarma, “Experimental investigation of fuel injection timing effects on a CRDI diesel engine running on hydrogen-enriched waste plastic oil,” vol. 57, pp. 1051–1069, 2024, doi: 10.1016/j.ijhydene.2024.01.052. [Google Scholar]
  29. M. Mariappan, M. S. Panithasan, and G. Gnanamoorthi, “Pyrolysis plastic oil production and optimisation followed by maximum possible replacement of diesel with bio-oil/methanol blends in a CRDI engine,” vol. 312, 2021, doi: 10.1016/jjclepro.2021.127687. [Google Scholar]

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