LAPSE:2023.3729v1
Published Article

LAPSE:2023.3729v1
An Assessment of the Operation and Emission Characteristics of a Diesel Engine Powered by a New Biofuel Prepared Using In Situ Transesterification of a Dry Spirogyra Algae−Jatropha Powder Mixture
February 22, 2023
Abstract
The present work deals with the optimization of the process parameters of in situ transesterification of dry spirogyra Algae−Jatropha powder along with engine efficiency and combustion analysis of the prepared biofuel. Three operational parameters, namely catalyst concentration (0−5 wt.%), methanol to dry algae−Jatropha curcas powder (v/v) (20−60%), and reaction time (60−180 min) at a constant reaction temperature of 50 °C, were selected. Response surface methodology (RSM) was used to design the experiments. The maximum biodiesel yield of 88.5% was obtained under the optimized conditions of a catalyst concentration of 3.396% (w/w), methanol/oil ratio of 19.86, and reaction time of 180 min. At varying loads, the performance and emissions of a diesel engine linked to a power source and fueled with various biodiesel mixes (Diesel, B5, B10, and B20) were tested. It was found that BSFC decreased as the applied load increased for all of the evaluated fuels. All of the biodiesel blends had greater BSFC than the diesel fuel. However, a substantial decrease in the emissions, including hydrocarbon (HC) and carbon monoxide (CO), was observed with the increase in NOx emissions. This method of preparing biodiesel will be beneficial in order to cater to the needs of the transportation sector because it has a lower energy consumption and less engine emissions.
The present work deals with the optimization of the process parameters of in situ transesterification of dry spirogyra Algae−Jatropha powder along with engine efficiency and combustion analysis of the prepared biofuel. Three operational parameters, namely catalyst concentration (0−5 wt.%), methanol to dry algae−Jatropha curcas powder (v/v) (20−60%), and reaction time (60−180 min) at a constant reaction temperature of 50 °C, were selected. Response surface methodology (RSM) was used to design the experiments. The maximum biodiesel yield of 88.5% was obtained under the optimized conditions of a catalyst concentration of 3.396% (w/w), methanol/oil ratio of 19.86, and reaction time of 180 min. At varying loads, the performance and emissions of a diesel engine linked to a power source and fueled with various biodiesel mixes (Diesel, B5, B10, and B20) were tested. It was found that BSFC decreased as the applied load increased for all of the evaluated fuels. All of the biodiesel blends had greater BSFC than the diesel fuel. However, a substantial decrease in the emissions, including hydrocarbon (HC) and carbon monoxide (CO), was observed with the increase in NOx emissions. This method of preparing biodiesel will be beneficial in order to cater to the needs of the transportation sector because it has a lower energy consumption and less engine emissions.
Record ID
Keywords
algae, biodiesel, emissions, engine performance, jatropha, transesterification
Subject
Suggested Citation
Jain S. An Assessment of the Operation and Emission Characteristics of a Diesel Engine Powered by a New Biofuel Prepared Using In Situ Transesterification of a Dry Spirogyra Algae−Jatropha Powder Mixture. (2023). LAPSE:2023.3729v1
Author Affiliations
Jain S: Department of Mechanical Engineering, School of Engineering, University of Petroleum and Energy Studies, Dehradun 248007, India
Journal Name
Energies
Volume
16
Issue
3
First Page
1470
Year
2023
Publication Date
2023-02-02
ISSN
1996-1073
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Original Submission
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PII: en16031470, Publication Type: Journal Article
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LAPSE:2023.3729v1
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https://doi.org/10.3390/en16031470
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Feb 22, 2023
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