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Particulate and gaseous emissions from a direct-injection spark ignition engine fueled with bioethanol and gasoline blends at ultra-high injection pressure

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  • Lee, Ziyoung
  • Park, Sungwook

Abstract

In this study, the effects of bioethanol mixing with gasoline on the emission of particulates and gaseous emissions at ultra-high pressure injection up to 50 MPa were investigated in a gasoline direct-injection (GDI) engine. A 398 cc single-cylinder engine fueled with bioethanol blends was used for the experiment. The gaseous emission was measured by an emission bench, and particle number (PN) was counted by a PPS-M device. Experiments were carried out under the conditions of maximum injection pressure of 50 MPa and constant intake flow rate with various injection conditions. Gasoline and bioethanol-blended fuel was used, with the blending ratio varied from 10% to 50% by volume. The results indicated that, as the injection pressure and bioethanol content increased, the PN decreased by 93.6% and 78.9%, respectively. PN emission is proportional to bioethanol contents in case of PN emitted from wall film. Effect of bioethanol addition with ultra-high pressure injection over 35 MPa is not significant on PN, since atomization enhancement due to the increased injection pressure is saturated. Total hydrocarbon and nitrogen oxide emissions decreased up to 34.5% and 35.6% with increasing oxygenated fuel, bioethanol, contents at ultra-high pressure injection over 35 MPa and were remarkably influenced by injection timing.

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  • Lee, Ziyoung & Park, Sungwook, 2020. "Particulate and gaseous emissions from a direct-injection spark ignition engine fueled with bioethanol and gasoline blends at ultra-high injection pressure," Renewable Energy, Elsevier, vol. 149(C), pages 80-90.
  • Handle: RePEc:eee:renene:v:149:y:2020:i:c:p:80-90
    DOI: 10.1016/j.renene.2019.12.050
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    1. Işik, Mehmet Zerrakki & Aydin, Hüseyin, 2019. "Investigation on the effects of gasoline reactivity controlled compression ignition application in a diesel generator in high loads using safflower biodiesel blends," Renewable Energy, Elsevier, vol. 133(C), pages 177-189.
    2. Song, Jingeun & Lee, Ziyoung & Song, Jaecheon & Park, Sungwook, 2018. "Effects of injection strategy and coolant temperature on hydrocarbon and particulate emissions from a gasoline direct injection engine with high pressure injection up to 50 MPa," Energy, Elsevier, vol. 164(C), pages 512-522.
    3. Masum, B.M. & Masjuki, H.H. & Kalam, M.A. & Rizwanul Fattah, I.M. & Palash, S.M. & Abedin, M.J., 2013. "Effect of ethanol–gasoline blend on NOx emission in SI engine," Renewable and Sustainable Energy Reviews, Elsevier, vol. 24(C), pages 209-222.
    4. Storch, Michael & Hinrichsen, Florian & Wensing, Michael & Will, Stefan & Zigan, Lars, 2015. "The effect of ethanol blending on mixture formation, combustion and soot emission studied in an optical DISI engine," Applied Energy, Elsevier, vol. 156(C), pages 783-792.
    5. Pandiyan, K. & Singh, Arjun & Singh, Surender & Saxena, Anil Kumar & Nain, Lata, 2019. "Technological interventions for utilization of crop residues and weedy biomass for second generation bio-ethanol production," Renewable Energy, Elsevier, vol. 132(C), pages 723-741.
    6. Luo, Lin & van der Voet, Ester & Huppes, Gjalt, 2009. "Life cycle assessment and life cycle costing of bioethanol from sugarcane in Brazil," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(6-7), pages 1613-1619, August.
    7. Gong, Changming & Liu, Jiajun & Peng, Legao & Liu, Fenghua, 2017. "Numerical study of effect of injection and ignition timings on combustion and unregulated emissions of DISI methanol engine during cold start," Renewable Energy, Elsevier, vol. 112(C), pages 457-465.
    8. Jeong, Jun-seong & Jeon, Hyungjin & Ko, Kyung-mo & Chung, Bongwoo & Choi, Gi-Wook, 2012. "Production of anhydrous ethanol using various PSA (Pressure Swing Adsorption) processes in pilot plant," Renewable Energy, Elsevier, vol. 42(C), pages 41-45.
    9. Tian, Zhi & Zhen, Xudong & Wang, Yang & Liu, Daming & Li, Xiaoyan, 2020. "Combustion and emission characteristics of n-butanol-gasoline blends in SI direct injection gasoline engine," Renewable Energy, Elsevier, vol. 146(C), pages 267-279.
    10. Vallinayagam, R. & Vedharaj, S. & Roberts, William L. & Dibble, Robert W. & Sarathy, S. Mani, 2017. "Performance and emissions of gasoline blended with terpineol as an octane booster," Renewable Energy, Elsevier, vol. 101(C), pages 1087-1093.
    11. Balat, Mustafa & Balat, Havva, 2009. "Recent trends in global production and utilization of bio-ethanol fuel," Applied Energy, Elsevier, vol. 86(11), pages 2273-2282, November.
    12. Mourad, M. & Mahmoud, K., 2019. "Investigation into SI engine performance characteristics and emissions fuelled with ethanol/butanol-gasoline blends," Renewable Energy, Elsevier, vol. 143(C), pages 762-771.
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    1. Li, Xiaoyan & Zhen, Xudong & Wang, Yang & Tian, Zhi, 2022. "Numerical comparative study on performance and emissions characteristics fueled with methanol, ethanol and methane in high compression spark ignition engine," Energy, Elsevier, vol. 254(PA).

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