Effect of Nano-Additives on the Emissions, Performance, and Combustion Characteristics of Syzygium cumini (Jamun) Biodiesel Powered DI Engine

Open Access

Year : 2024 | Volume : | : | Page : –
By

    R.Anbazhagan

  1. P.Naveenchandran

  1. Research Scholar, Department of Automobile Engineering, Bharath Institute of Higher Education and Research, Chennai, Tamil Nadu, India
  2. Professor, Department of Automobile Engineering, Bharath Institute of Higher Education and Research, Chennai, Tamil Nadu, India

Abstract

Renewable and cleaner diesel engine fuel has received a lot of attention recently as a result of the depletion of fossil resources. To address this issue, biodiesel can be a potential substitute for diesel fuel. The finest B20 Jamun blends were combined with three different types of nanoadditives to create Syzygium cumini (Jamun) biodiesel, which was tested in a naturally aspirated diesel engine. Global researchers are starting to develop new nanoadditives in the meantime, which is an authoritative and efficient method. This technology was combined with different biodiesels. Also included in this chapter is an examination of a test engine using three distinct nano-additives: titanium dioxide (TiO2), zirconium oxide (ZrO2), and cerium oxide (CeO2). These additives were combined to create the best blends of Syzygium cumini (B20), and the results were evaluated based on factors such as performance, combustion, and output emissions. Additionally, a proposal is made to further improve the construction of a realistic and economically feasible nanoparticle addition for diesel and biodiesel fuel.

Keywords: performance, Combustion, Emission, Biodiesel, Additives

How to cite this article: R.Anbazhagan, P.Naveenchandran , Effect of Nano-Additives on the Emissions, Performance, and Combustion Characteristics of Syzygium cumini (Jamun) Biodiesel Powered DI Engine jopc 2024; :-
How to cite this URL: R.Anbazhagan, P.Naveenchandran , Effect of Nano-Additives on the Emissions, Performance, and Combustion Characteristics of Syzygium cumini (Jamun) Biodiesel Powered DI Engine jopc 2024 {cited 2024 Apr 15};:-. Available from: https://journals.stmjournals.com/jopc/article=2024/view=143306

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Ahead of Print Open Access Original Research
Volume
Received January 6, 2024
Accepted January 20, 2024
Published April 15, 2024