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PENGARUH PRODUKSI UAP AIR HASIL DARI PEMANFAATAN PANAS BUANG PADA EXHAUST TERHADAP PERFORMA HONDA BEAT 110CC Bagas Putro
Jurnal Teknik Mesin Vol 18, No 1 (2022)
Publisher : UNIVERSITAS ISLAM MALANG

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Abstract

Based on testing and data analysis on the effect of adding water vapor to engine performance and exhaust emissions on the Honda Beat 110cc. The results of this study can be concluded that at RPM 3000 to 8400, with the addition of water vapor into the intake manifold will increase the performance of the Honda Beat 110 cc, which includes torque, power and fuel consumption is more efficient and it is better to use a mixture of water vapor. because the hydrogen content contained in the water vapor can bind the hydrocarbon and carbon monoxide content so that a chemical reaction occurs in the combustion chamber. As well as hydrocarbons (HC) and oxygen (O2), they will carry out chemical reactions to form carbon dioxide (CO2) and water vapor (H2O) which reduce exhaust emission levels when the two compounds react in the combustion chamber Keyword: engine performance, fuel consumption, exhaust gas, hydrogen
PENGARUH PRODUKSI UAP AIR HASIL DARI PEMANFAATAN PANAS BUANG PADA EXHAUST TERHADAP PERFORMA HONDA BEAT 110CC Bagas Putro; Ena Marlina; Nur Robbi
Jurnal Teknik Mesin Vol. 18 No. 1 (2022)
Publisher : UNIVERSITAS ISLAM MALANG

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Based on testing and data analysis on the effect of adding water vapor to engine performance and exhaust emissions on the Honda Beat 110cc. The results of this study can be concluded that at RPM 3000 to 8400, with the addition of water vapor into the intake manifold will increase the performance of the Honda Beat 110 cc, which includes torque, power and fuel consumption is more efficient and it is better to use a mixture of water vapor. because the hydrogen content contained in the water vapor can bind the hydrocarbon and carbon monoxide content so that a chemical reaction occurs in the combustion chamber. As well as hydrocarbons (HC) and oxygen (O2), they will carry out chemical reactions to form carbon dioxide (CO2) and water vapor (H2O) which reduce exhaust emission levels when the two compounds react in the combustion chamber Keyword: engine performance, fuel consumption, exhaust gas, hydrogen