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Oxygen not included ethanol2/13/2023 This study conclude that PE15 can be used as an alternative fuel.Įnergy crisis is one of the major concern prevailing in this world, particularly in developed countries. Lower value of coefficient of variation revealed stable combustion. The combustion characteristics were also studied. Hydrocarbon and carbon monoxide emissions were reduced, while increasing the ratio of ethanol relative to pure gasoline, except PE10 blend. Oxides of nitrogen as well as carbon dioxide emissions were increased as the proportion of ethanol in pure fuel was increased. Brake specific fuel consumption of PE15 was noticed to be lower at different operating speeds among all the blends. PE15 blend exhibited optimum brake thermal efficiency at full load condition when compared with unleaded fuel. However, thermal performance was observed to be declined. It was inferred that the addition of ethanol enhanced the consumption of fuel as well as braking capacity. Four different blends of bioethanol, namely PE10, PE15, PE20, and PE25 were experimented at various operating speeds. This work focusses on a novel technique of producing bioethanol from fermented pomegranate fruits waste by using Saccharomyces cerevisiae, commonly known as baker's yeast.
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