Comparative Assessment of Ethanol and Methanol–Ethanol Blends with Gasoline in SI Engine for Sustainable Development

Author:

Usman Muhammad1ORCID,Ijaz Malik Muhammad Ali2ORCID,Chaudhary Tariq Nawaz1ORCID,Riaz Fahid3ORCID,Raza Sohaib1,Abubakar Muhammad1,Ahmad Malik Farrukh1,Muhammad Ahmad Hafiz1,Fouad Yasser4ORCID,Abbas Muhammad Mujtaba5ORCID,Kalam Muhammad Abul6ORCID

Affiliation:

1. Department of Mechanical Engineering, University of Engineering and Technology, Lahore 54890, Pakistan

2. Department of Mechanical Engineering, Superior University, Raiwind Road, Lahore 54000, Pakistan

3. Mechanical Engineering Department, Abu Dhabi University, Abu Dhabi P.O. Box 59911, United Arab Emirates

4. Department of Applied Mechanical Engineering, College of Applied Engineering, Muzahimiyah Branch, King Saud University, P.O. Box 800, Riyadh 11421, Saudi Arabia

5. Department of Mechanical Engineering, University of Engineering and Technology (New Campus), Lahore 54890, Pakistan

6. School of Civil and Environmental Engineering, FEIT, University of Technology Sydney, Ultimo, NSW 2007, Australia

Abstract

Growing environmental concerns over global warming and depleting fossil fuel reserves are compelling researchers to investigate green fuels such as alcoholic fuels that not only show the concrete decrement in emissions but also enhance engine performance. The current study emphasizes the influence of different alcoholic fuel blends in gasoline on engine performance and emissions for an engine speed ranging from 1200 to 4400 rpm. The obtained performance results demonstrate that the brake power and brake thermal efficiency (BTE) increased with an incrementing blend percentage of ethanol and methanol in gasoline (EM). The minimum brake specific fuel consumption (BSFC) was ascertained using pure gasoline followed by E2 and then E5M5. The NOx and CO2 emissions can be described in the decreasing order of E, EM and gasoline due to same trend of exhaust gas temperature (EGT). CO results were in reverse order of CO2. HC emissions were found in the increasing order of E, EM and pure gasoline. E10 performed better among all blends in terms of less exhaust emissions and engine performance. However, EM blended with gasoline significantly reduced NOx. E5M5 produced 1.9% lower NOx emission compared to E10 owing to 1.2% lower EGT. Moreover, greenhouse gases such as CO2, which is mainly responsible for global warming reducing by 1.1% in case E5M5 as compared to E10.

Funder

King Saud University, Riyadh, Saudi Arabia

Abu Dhabi University, UAE

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

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