An Overview of the Classification, Production and Utilization of Biofuels for Internal Combustion Engine Applications
Обзор классификации, производства и использования биотоплива в двигателях внутреннего сгорания
2021-09-09
SCID: 54.1/cdypj6y7
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Fischer–Tropsch fuelbiofuel classificationbiofuelsengine emissionsinternal combustion engines
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Abstract (AI)
Biofuel, a cost-effective, safe, and environmentally benign fuel produced from renewable sources, has been accepted as a sustainable replacement and a panacea for the damaging effects of the exploration for and consumption of fossil-based fuels. The current work examines the classification, generation, and utilization of biofuels, particularly in internal combustion engine (ICE) applications. Biofuels are classified according to their physical state, technology maturity, the generation of feedstock, and the generation of products. The methods of production and the advantages of the application of biogas, bioalcohol, and hydrogen in spark ignition engines, as well as biodiesel, Fischer–Tropsch fuel, and dimethyl ether in compression ignition engines, in terms of engine performance and emission are highlighted. The generation of biofuels from waste helps in waste minimization, proper waste disposal, and sanitation. The utilization of biofuels in ICEs improves engine performance and mitigates the emission of poisonous gases. There is a need for appropriate policy frameworks to promote commercial production and seamless deployment of these biofuels for transportation applications with a view to guaranteeing energy security.
Key Findings
1
Biodiesel, Fischer–Tropsch fuel, and dimethyl ether are highlighted for compression-ignition engines, including performance and emissions effects.
2
Biofuel use in internal combustion engines can improve engine performance and reduce emissions of poisonous gases, but policy support is needed for commercial deployment and energy security.
3
It examines production methods and ICE applications of biogas, bioalcohol, and hydrogen in spark-ignition engines.
4
Producing biofuels from waste supports waste minimization, proper disposal, and improved sanitation.
5
The review classifies biofuels by physical state, technology maturity, feedstock generation, and product generation.
Research Object
Biofuels used in internal combustion engine applications
Research Subject
Biofuel classification, production methods, and effects on internal-combustion-engine performance and emissions
Publication Details
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2021-09-09
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