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    Investigating the Effect of Using Butyl Palmitate as a Fuel Additive on Diesel Engine Performance, Combustion, Emission, and Soot Morphological Characteristics

    Source: Journal of Energy Engineering:;2025:;Volume ( 151 ):;issue: 003::page 04025021-1
    Author:
    Prashant Gupta
    ,
    Jitendra Dixit
    ,
    Rohidas Bhoi
    ,
    Dilip Sharma
    ,
    Nikhil Sharma
    DOI: 10.1061/JLEED9.EYENG-5817
    Publisher: American Society of Civil Engineers
    Abstract: Diesel engines are known for their high torque and are widely used in automotive, maritime, and industrial sectors because they offer superior power output and efficiency. Fuel additives are explored and utilized by industries and researchers because they may offer superior performance, combustion, and emission characteristics. Laboratory prepared, low-cost butyl palmitate blended with diesel was used as a fuel additive in a single-cylinder, four-stroke, water-cooled diesel engine with a power output of 3.5 kW at constant rpm. This work investigates its effects on diesel engine performance, combustion, and soot morphology and emissions characteristics across various engine loads. Experiments were conducted using four different fuel compositions, including (1) diesel [D100], (2) diesel blended with 4% butyl palmitate solution [D100 + BP], (3) 90% (v/v) diesel blended with 10% (v/v) methanol [DM10], and (4) DM10 blended with 4% butyl palmitate solution [DM10 + BP]. This study investigates various parameters, including brake thermal efficiency (BTE), brake specific fuel consumption (BSFC), in-cylinder pressure traces, peak pressure, emissions [hydrocarbons (HC), carbon monoxide (CO), oxides of nitrogen (NOx)], and soot morphology. The DM10 + Butyl Palmitate test fuel showed relatively superior BTE with an increasing load compared to that of the other test fuels. BSFC was found to decrease for DM10 + Butyl Palmitate fuel. The addition of additives to DM10 have marginally decreased gas emission. This research is crucial for understanding the impact of fuel additives, particularly butyl palmitate, on engine performance and emissions. The findings could be used by fuel industries in making decisions regarding vital performance and emission characteristics.
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      Investigating the Effect of Using Butyl Palmitate as a Fuel Additive on Diesel Engine Performance, Combustion, Emission, and Soot Morphological Characteristics

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4307574
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    contributor authorPrashant Gupta
    contributor authorJitendra Dixit
    contributor authorRohidas Bhoi
    contributor authorDilip Sharma
    contributor authorNikhil Sharma
    date accessioned2025-08-17T22:52:08Z
    date available2025-08-17T22:52:08Z
    date copyright6/1/2025 12:00:00 AM
    date issued2025
    identifier otherJLEED9.EYENG-5817.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4307574
    description abstractDiesel engines are known for their high torque and are widely used in automotive, maritime, and industrial sectors because they offer superior power output and efficiency. Fuel additives are explored and utilized by industries and researchers because they may offer superior performance, combustion, and emission characteristics. Laboratory prepared, low-cost butyl palmitate blended with diesel was used as a fuel additive in a single-cylinder, four-stroke, water-cooled diesel engine with a power output of 3.5 kW at constant rpm. This work investigates its effects on diesel engine performance, combustion, and soot morphology and emissions characteristics across various engine loads. Experiments were conducted using four different fuel compositions, including (1) diesel [D100], (2) diesel blended with 4% butyl palmitate solution [D100 + BP], (3) 90% (v/v) diesel blended with 10% (v/v) methanol [DM10], and (4) DM10 blended with 4% butyl palmitate solution [DM10 + BP]. This study investigates various parameters, including brake thermal efficiency (BTE), brake specific fuel consumption (BSFC), in-cylinder pressure traces, peak pressure, emissions [hydrocarbons (HC), carbon monoxide (CO), oxides of nitrogen (NOx)], and soot morphology. The DM10 + Butyl Palmitate test fuel showed relatively superior BTE with an increasing load compared to that of the other test fuels. BSFC was found to decrease for DM10 + Butyl Palmitate fuel. The addition of additives to DM10 have marginally decreased gas emission. This research is crucial for understanding the impact of fuel additives, particularly butyl palmitate, on engine performance and emissions. The findings could be used by fuel industries in making decisions regarding vital performance and emission characteristics.
    publisherAmerican Society of Civil Engineers
    titleInvestigating the Effect of Using Butyl Palmitate as a Fuel Additive on Diesel Engine Performance, Combustion, Emission, and Soot Morphological Characteristics
    typeJournal Article
    journal volume151
    journal issue3
    journal titleJournal of Energy Engineering
    identifier doi10.1061/JLEED9.EYENG-5817
    journal fristpage04025021-1
    journal lastpage04025021-9
    page9
    treeJournal of Energy Engineering:;2025:;Volume ( 151 ):;issue: 003
    contenttypeFulltext
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