Open Access
| Issue |
E3S Web Conf.
Volume 690, 2026
2025 13th International Conference on Environment Pollution and Prevention (ICEPP 2025)
|
|
|---|---|---|
| Article Number | 02004 | |
| Number of page(s) | 12 | |
| Section | Valorization of Biomass Waste into Green Fuels and Sustainable Materials | |
| DOI | https://doi.org/10.1051/e3sconf/202669002004 | |
| Published online | 18 January 2026 | |
- X. Wang et al., “Evaluation of hydrous ethanol as a fuel for internal combustion engines: A review,” Renew. Energy, vol. 194, pp. 504–525, July 2022. [Google Scholar]
- T. J. Tse, D. J. Wiens, and M. J. T. Reaney, “Production of bioethanol—A review of factors affecting ethanol yield,” Fermentation, vol. 7, no. 4, p. 268, Nov. 2021. [Google Scholar]
- A. I. Osman, L. Chen, and M. Yang, “Cost, environmental impact, and resilience of re-newable energy under a changing climate: a review,” Environ Chem Lett, vol. 21, pp. 741–764, 2023. [Google Scholar]
- J. E. Anderson and T. J. Wallington, “Novel Method to Estimate the Octane Ratings of Ethanol-Gasoline Mixtures using Base Fuel Properties,” Energy & Fuels, 2020. [Google Scholar]
- M. K. Mohammed, H. H. Balla, Z. M. H. Al-Dulaimi, Z. S. Kareem, and M. S. Al-Zuhairy, “Effect of ethanol-gasoline blends on SI engine performance and emissions,” Case Stud. Therm. Eng., vol. 25, no. 100891, p. 100891, June 2021. [Google Scholar]
- S. Mueller, G. Dennison, and S. Liu, “An assessment on ethanol-blended gasoline/diesel fuels on cancer risk and mortality,” Int. J. Environ. Res. Public Health, vol. 18, no. 13, p. 6930, June 2021. [Google Scholar]
- F. M. S. M. Haas, Annual Biofuels Report,” United States Department of Agriculture, Foreign Agricultural Service. 2021. [Google Scholar]
- N. E. R. Mateo et al., “Nipa Sap (Nypa fruitican) as Supplementary Feedstock for Bioethanol Production in the Philippines: The Pamplona Experience,” in Springer Proceedings in Earth and Environmental Sciences, Cham: Springer International Publishing, 2023, pp. 19–28. [Google Scholar]
- B. Dey, B. Roy, S. Datta, and T. S. Ustun, “Forecasting ethanol demand in India to meet future blending targets: A comparison of ARIMA and various regression models,” Energy Rep., vol. 9, pp. 411–418, Mar. 2023. [Google Scholar]
- A. Devi et al., “A panoramic view of technological landscape for bioethanol production from various generations of feedstocks,” Bioengineered, vol. 14, no. 1, pp. 81–112, Dec. 2023. [Google Scholar]
- Z. Z. I. K. Tola E Al-Gaadi Alameen and A. A. Zeyada, “Hydrous Ethanol-gasoline Blends as Alternative Fuels for Spark Ignition Engine: Fuel Properties and Engine Performance,” International Energy Journal, pp. 245–254, 2022. [Google Scholar]
- A. Belonio, Philippine Rice Research Institute (PhilRice), Science City of Munoz, Nueva Ecija, Philippines, M. J. Regalado, N. Tado, and E. Sicat, “Development of a hydrous ethanol fuel feeding device for sparkignition engine,” J. Technol. Innov. Renew. Energy, vol. 3, no. 4, pp. 159–165, Dec. 2014. [Google Scholar]
- J. L. Yu and E. N. Quiros, “Performance characteristics of Philippine hydrous ethanol-gasoline blends: Preliminary findings,” in ASME 2019 13th International Conference on Energy Sustainability, Bellevue, Washington, USA, 2019. [Google Scholar]
- N. E. R. Mateo, R. A. Ulep, M. P. Lucas, S. C. Agrupis, J. Sagadraca, and C. Baga, “An overview on the viability of hydrous bioethanol as gasoline fuel blend in the Philippines,” in The AUN/SEED-Net Joint Regional Conference in Transportation, Energy, and Mechanical Manufacturing Engineering, Singapore: Springer Nature Singapore, 2022, pp. 301–314. [Google Scholar]
- P. P. Paenpong, “Development of electronic fuel Injection system through the use of Arduino Mega 2560 microcontroller,” Journal of Engineering and Innovation, pp. 34–43, 2023. [Google Scholar]
- T. C. C. De Melo, “Hydrous ethanol-gasoline blends Combustion and emission investigations on a Flex-Fuel engine,” Fuel (Lond.), vol. 97, pp. 796–804, 2012. [Google Scholar]
- L. Matějovský, J. Macák, M. Pospíšil, P. Baroš, M. Staš, and A. Krausová, “Study of corrosion of metallic materials in ethanol–gasoline blends: Application of electrochemical methods,” Energy Fuels, vol. 31, no. 10, pp. 10880–10889, Oct. 2017. [Google Scholar]
- Muhaji and D. H. Sutjahjo, “The characteristics of bioethanol fuel made of vegetable raw materials,” IOP Conf. Ser. Mater. Sci. Eng., vol. 296, p. 012019, Jan. 2018. [Google Scholar]
- V. Edwin Geo, D. Jesu Godwin, S. Thiyagarajan, C. G. Saravanan, and F. Aloui, “Effect of higher and lower order alcohol blending with gasoline on performance, emission and combustion characteristics of SI engine,” Fuel (Lond.), vol. 256, no. 115806, p. 115806, Nov. 2019. [Google Scholar]
- N. Sutarna, P. N. Bali, I. N. L. Antara, and D. S. Anakottapary, “Fuel consumption analysis of injection system and carburetor system on Honda beat fi 2013,” Logic, vol. 20, no. 3, pp. 141–144, Nov. 2020. [Google Scholar]
- A. Yakın and R. Behçet, “Effect of different types of fuels tested in a gasoline engine on engine performance and emissions,” Int. J. Hydrogen Energy, vol. 46, no. 66, pp. 33325–33338, Sept. 2021. [Google Scholar]
- D. Y. Dhande, N. Sinaga, and K. B. Dahe, “Study on combustion, performance and exhaust emissions of bioethanol-gasoline blended spark ignition engine,” Heliyon, vol. 7, no. 3, p. e06380, Mar. 2021. [Google Scholar]
- O. C. Nwufo, O. M. I. Nwafor, and J. O. Igbokwe, “Effects of blends on the physical properties of bioethanol produced from selected Nigerian crops,” Int. J. Ambient Energy, vol. 37, no. 1, pp. 10–15, Jan. 2016. [Google Scholar]
- A. Demirbas and K. Al-Ghamdi, “Relationships between specific gravities and higher heating values of petroleum components,” Pet. Sci. Technol., vol. 33, no. 6, pp. 732–740, Mar. 2015. [Google Scholar]
- I. Made Suarta, I. Nyoman Gede Baliarta, I. P. G. Sopan Rahtika, and P. W. Sunu, “The role of hydrogen bonds of the azeotropic hydrous ethanol fuel composition to the exhaust emissions,” J. Phys. Conf. Ser., vol. 953, p. 012070, Jan. 2018. [Google Scholar]
- O. A. Odunlami, O. K. Oderinde, F. A. Akeredolu, J. A. Sonibare, O. R. Obanla, and M. E. Ojewumi, “The effect of air-fuel ratio on tailpipe exhaust emission of motorcycles,” Fuel Communications, vol. 11, no. 100040, p. 100040, June 2022. [Google Scholar]
- S. A. Flamarz Al-Arkawazi, “The gasoline fuel quality impact on fuel consumption, air-fuel ratio (AFR), lambda (λ) and exhaust emissions of gasoline-fueled vehicles,” Cogent Eng., vol. 6, no. 1, Jan. 2019. [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.

