Production of Raphanus Sativus Biodiesel and Its Performance Assessment in a Thermal Barrier‐Coated Agriculture Sector Diesel Engine

Author:

Ravikumar Venkatachalam1,Senthilkumar Duraisamy1,Vellaiyan Suresh2,Saravanan Chidambaram Ganapathy3,Vikneswaran Malaiperumal4,Joseph Shobana Bai Femilda Josephin5,Varuvel Edwin Geo67ORCID

Affiliation:

1. Department of Mechanical Engineering Sona College of Technology Salem 636005 India

2. Department of Sustainable Engineering Saveetha School of Engineering SIMATS Chennai 602105 Tamil Nadu India

3. Department of Mechanical Engineering Annamalai University Annamalainagar 608002 Tamil Nadu India

4. Department of Mechanical Engineering Faculty of Engineering and Technology SRM Institute of Science and Technology Ramapuram Chennai 600089 Tamil Nadu India

5. Department of Computer Engineering Faculty of Engineering and Natural Sciences Istinye University 34396 Istanbul Turkey

6. Department of Mechanical Engineering Faculty of Engineering and Natural Sciences Istinye University 34396 Istanbul Turkey

7. Department of Automobile Engineering Faculty of Engineering and Technology SRM Institute of Science and Technology Kattankulathur 603203 Tamil Nadu India

Abstract

Herein, in order to estimate the optimized process specifications, an empirical study is done for biodiesel production, performance of standard and coated engine, combustion, and discharge aspects of Raphanus sativus (radish) biodiesel. Optimization process parameters of biodiesel production are done using the response surface method. The importance of this study is that optimized biodiesel production is used to improve the biodiesel properties and fatty acid content to find suitable vegetable oil as well as a new coating material for sustainable development of the country in the field of agriculture and ecological conditions. The mechanism used in this research work is a coating for internal combustion engine components done with partially stabilized zirconia, aluminum–20% silicon carbide (Al–20%SiC), and titanium dioxide that acts as a ceramic composite settled above the coating that has a thickness of 450 μm by the technique called air plasma spray for test purpose. To increase the performance of an engine and reduce the emission particles like smoke density, carbon monoxide, and hydrocarbon except NO x , the partially stabilized zirconia, aluminum–20% silicon carbide (Al–20%SiC) coated engine is used under various compositions of radish biodiesel and clean diesel. To reduce NO x , the engine operation is carried out along with the TiO2 coated combustion chamber steam, and water injection technique is added to overcome the NO x formation. From this study, the resulting factor shows that adding 25% radish biodiesel (B25) and 75% clean diesel shows a reasonable reduction in emissions with comparatively better performance and combustion in the engine under consideration.

Publisher

Wiley

Subject

General Energy

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