The Influence of N-Butanol Addition in Gasoline on the Combustion in the Spark Ignition Engine
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Published:2023-09-21
Issue:18
Volume:15
Page:14009
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ISSN:2071-1050
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Container-title:Sustainability
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language:en
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Short-container-title:Sustainability
Author:
Sandu Cristian1, Pana Constantin1, Negurescu Niculae1, Lazaroiu Gheorghe2ORCID, Cernat Alexandru1, Georgescu Rares1, Nutu Cristian1
Affiliation:
1. Department of Thermotechnics, Engines, Thermal and Frigorific Equipment, University Politehnica of Bucharest, 060042 Bucharest, Romania 2. Department of Energy Generation and Use, University Politehnica of Bucharest, 060042 Bucharest, Romania
Abstract
Butanol has good combustion properties and it can be a viable alternative fuel for automotive spark ignition engines due to its ability to improve energy and pollution performance. This paper analyses the influence of butanol content in gasoline blends on engine operation with a focus on operation stability, thermal efficiency and emissions. A Cielo Nubira A15MF engine type with four cylinders and a 1.5 L displacement was turbocharged and it was fueled with butanol in a blend with gasoline in percent’s of 10% vol. and 15% vol. An operation regime of 2500 1/min speed and 55% engine load was used, at different dosages, at which the engine power remained constant. Regarding the engine fueled with butanol in a blend with gasoline, the operation stability was improved, especially when lean dosages were used; the dosages at which the thermal efficiency was higher are comparative to classic fueling. Concerning the use of lean dosages, the combustion duration decreases and the energetic engine performance was improved when butanol was used comparative to gasoline. When butanol was used, polluting emissions and emission with a greenhouse effect were reduced. The sharp reduction in NOx is highlighted in this paper.
Funder
Ministry of Research, Innovation and Digitization, CNCS—UEFISCDI
Subject
Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction
Reference32 articles.
1. Wang, X., Sun, H., Wang, Y., Wang, F., Zhu, W., Wu, C., Wang, Q., and Gao, M. (2023). Feasibility of Efficient, Direct, Butanol Production from Food Waste without Nutrient Supplement by Clostridium saccharoperbutylacetonicum N1-4. Sustainability, 15. 2. Meramo, S., Gonzalez-Quiroga, A., and Gonzalez-Delgado, A. (2022). Technical, Environmental and Process Safety Assessment of Acetone–Butanol-Ethanol Fermentation of Cassava Residues. Sustainability, 14. 3. Sule, A., Latiff, Z.A., Abas, M.A., Veza, I., Soudagar, M.E.M., Harny, I., and Epin, V. (2023). Dual Effects of N-Butanol and Magnetite Nanoparticle to Biodiesel-diesel Fuel Blends as Additives on Emission Pattern and Performance of a Diesel Engine with ANN Validation. Sustainability, 15. 4. Rayapureddy, S.M., Matijosius, J., Rimkus, A., Caban, J., and Slowik, T. (2023). Comparative study of Combustion, Performance and Emission Characteristics of Hydrotreated Vegetable Oil-Biobutanol Fuel Blends and Diesel Fuel on a CI Engine. Sustainability, 14. 5. Lapuerta, M., Ballesteros, R., and Barba, J. (2017). Strategies to Introduce n-Butanol in Gasoline Blends. Sustainability, 9.
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