Performance and emissions characteristics of biodiesel in diesel engine

Jump To References Section

Authors

  • ,IN
  • ,IN
  • ,IN
  • ,IN

DOI:

https://doi.org/10.18311/jmmf/2021/30093

Keywords:

Biodiesel, diesel engine, performance, emissions.

Abstract

The climate and fuel supply have been problematic emphasis on alternative fuels for combustion engines. Different research studies tested various alternative fuels. In this connection, biodiesel is the most promising diesel fuel based on a literature survey. In this paper, the prospects and potential for the use of biodiesel and increasing biodieseldiesel blending are studied by a fixed compression ratio, Optimum blending and enhanced performance engine parameter and pollution control should be proposed based on experiments. Experiments for a set compression ratio (17:1) undertaken utilising biodiesel cotton seed oil (CSME) diesel blends, i.e. B0, B10, B20, B30, without full loading rates, compared to the base cases (e.g. diesel engine fuel). The parameters may evaluate the fuel consumption and thermal efficiency of the brakes, Unburned hydrocarbons, and nitrogen oxides in emission of carbon monoxide. The results concluded that, B20 (20% biodiesel and 80% diesel) is the most efficient compared to other mixtures.

Downloads

Download data is not yet available.

Metrics

Metrics Loading ...

Downloads

Published

2022-04-28

How to Cite

Deepak Kumar, T., Venkatesha, B. K., Sameer Hussain, S., & Ramesha, D. K. (2022). Performance and emissions characteristics of biodiesel in diesel engine. Journal of Mines, Metals and Fuels, 69(12A), 44–47. https://doi.org/10.18311/jmmf/2021/30093
Received 2022-04-27
Accepted 2022-04-27
Published 2022-04-28

 

References

M. Mofijur , M.G. Rasul , J. Hyde, (2016): “Role of biofuel and their binary (diesel–biodiesel) and ternary (ethanol-biodiesel-diesel) blends on internal combustion engines emission reduction”, Renewable and Sustainable Energy Reviews 53, 265–278.

Md. Mofijur Rahman, Masjuki Hj. Hassan, (2014): “Performance and emission analysis of Jatropha curcas and Moringa oleifera methyl ester fuel blends in a multi-cylinder diesel engine”, Journal of Cleaner Production 65, 304-310

Eyasu Shumbulo Shuba, (2018): “Microalgae to biofuels: ‘Promising’ alternative and renewable energy, review”, Renewable and Sustainable Energy Reviews 81, 743–755.

P. Tamilselvana, N. Nallusamy. (2017): “A comprehensive review on performance, combustion and emission characteristics of biodiesel fuelled diesel engines”, Renewable and Sustainable Energy Reviews 79, 1134–1159.

Ahmad Abbaszaadeh, Barat Ghobadian, (2012): “Current biodiesel production technologies: A comparative review”, Energy Conversion and Management 63,138–148

Bhaskar Kathirvelu A, Sendilvelan Subramanian, (2017): “Emission characteristics of biodiesel obtained from jatropha seeds and fish wastes in a diesel engine”, Sustainable Environment Research 27, 283- 290.

Sandeep Kumar Duran, (2017): “A review on oil extraction and biofuels production from various materials”, https://doi.org/10.1016/j.matpr.2019.11.22.

Hayder A. Alalwana, Alaa H. Alminshidb. 2019: “Promising evolution of biofuel generations. Subject review”. Renewable Energy Focus Volume 28, Number 00 March.

Medhat Elkelawya, Safaa El-din H. Etaiwb., (2020): “Study of diesel-biodiesel blends combustion and emission characteristics in a CI engine by adding nanoparticles of Mn (II) supramolecular complex”, Atmospheric Pollution Research 11, 117–128.

Similar Articles

You may also start an advanced similarity search for this article.