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- W4313343803 abstract "The transportation and industrial industries began to expand, and people have been working hard to find the finest alternative fuels to protect the environment. Because of their low cost, ease of manufacture and great combustion properties, acetylene, and biogas have proven to be superior fuels for internal combustion engines than other options. Furthermore, it has less carbon than other fuels, which plays a key role in environmental damage. The fuel, on the other hand, must be both safe and ecologically benign, as well as readily useable in current engines without requiring large design changes. Acetylene is created in tandem with the engine running, with special attention paid to avoid backfiring. This study argues that mixing biogas with acetylene is the safest and most appropriate fuel for a generator. The generator is put through its paces whilst being monitored for combustion performance to determine the best fuel flow rates and reduce emissions. The article highlights the potential and application of biogas as a renewable energy source alternative fuel, primarily for use in gas-generator stations. Biogas is a mixture of methane and carbon dioxide that can be used as a fuel. The type of raw material required in its manufacture determines its makeup. Biogas contains between 50 and 80% methane. It is required to tweak particular adjustment settings depending on the concentration of methane in the mixture for the engine to run at optimal efficiency with various biogas fuels. This necessitates the development of a biogas simulation system that accounts for various concentrations of the key components. The goal is to research and discover the best and safe biofuel mix concentrations, as well as their impact on engine performance and fuel consumption. Biogas can be used to generate power, heat, steam, or as a fuel for internal combustion engines, lowering toxic emissions into the environment. The researchers concluded that combining acetylene with biogas would be a better alternative fuel." @default.
- W4313343803 created "2023-01-06" @default.
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- W4313343803 date "2023-01-01" @default.
- W4313343803 modified "2023-10-16" @default.
- W4313343803 title "Design, Fabrication, and Analysis of Hybrid Fuel-Based Electric Generator" @default.
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- W4313343803 doi "https://doi.org/10.1007/978-981-19-6945-4_74" @default.
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