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Production, characterization and biodegradability of biodiesel from mangifera indica kernel oil industrial

 

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Thesis Abstract

Abstract
This research project focuses on the production, characterization, and biodegradability of biodiesel derived from Mangifera indica kernel oil industrial. The utilization of non-edible feedstocks for biodiesel production is gaining interest due to concerns about food security and the sustainability of biodiesel production. Mangifera indica kernel oil, a byproduct of the mango processing industry, offers a promising alternative feedstock for biodiesel production. The research involves the extraction of oil from the mango kernels, followed by a transesterification process to convert the oil into biodiesel. The biodiesel produced is then characterized using various analytical techniques to assess its quality and properties. Parameters such as viscosity, density, flash point, cetane number, and oxidative stability are determined to ensure that the biodiesel meets the relevant fuel standards. In addition to characterizing the biodiesel, the research also investigates its biodegradability, which is a crucial aspect of assessing the environmental impact of biodiesel. Biodegradability tests are conducted to evaluate the rate at which the biodiesel breaks down in the environment, providing insights into its eco-friendliness and potential for reducing environmental pollution. Overall, this research project contributes to the field of biodiesel production by exploring the use of Mangifera indica kernel oil industrial as a sustainable feedstock. The findings from this study are expected to provide valuable information on the production process, quality characteristics, and environmental impact of biodiesel derived from mango kernel oil, thereby promoting the utilization of non-edible feedstocks for biodiesel production.

Thesis Overview

INTRODUCTION

            Energy is essential to man’s continued existence. Today, the energy used by most industrialized and developing nations is oil, coal and natural gas. This need of energy is increasing continuously,1 fossil fuel reserves are fast depleting, crude oil prices are soaring and there is considerable uncertainty in their near-future availability. Countries lacking petroleum-based resources are facing foreign exchange crisis due to importation of crude oil. This increasing trend in world energy consumption can be attributed to a growing world population and activities of developing countries2. As world population continues to grow and the limited amounts of fossil fuels diminish, it may not be possible to provide the amount of energy demanded by only using fossil fuels to convert energy. And although, most countries are comfortable with the fairly low cost of converting fossil fuels as their main source of energy, there are problems associated with this: they are a major source of environmental pollution and the green house gas, CO2 which is associated with global warming.

            If we are to keep on the trend of increasing global consumption, resources are bound to run out. The amount of time until this happens depends on efforts from countries to tap into renewable resources2. Therefore, it is becoming increasingly certain that in the future agriculture will become a significant supplier of energy along with food3. Already, the renewable form of energy diversification, from our green fields, known as biofuels is gaining grounds and proving to be the viable complement to petroleum-based fuels. Due to its clean emissions, ease of use and many other benefits, biodiesel is quickly becoming one of the fastest growing alternative fuels in the world. It can be used either pure or in blends with diesel fuel in unmodified engines as it reduces some exhaust pollutants. Also, while it can be produced from animal fats, the main fuel stock is vegetable oils, which can be obtained from amazing variety of plants. 4



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