Abstract

The increase in vehicle volume causes an increase in the use of gasoline fuel and air pollution. Therefore, alternative fuels such as butanol are one of the solutions to overcome this problem. Butanol has a high octane value and oxygen content so that the combustion process is more perfect and reduces exhaust emissions. The use of butanol is expected to improve engine performance and reduce exhaust emissions. The purpose of this study was to observe the effect of butanol on gasoline engines with the EGR system on Brake Specific Fuel Consumption (BSFC), Brake Thermal Efficiency (BTE), and exhaust emissions. Testing uses a Toyota Kijang 7K gasoline engine with an EFI fuel system. The percentage of butanol used is 5%, 10%, 15% in the condition without EGR, hot EGR, and cold EGR. The test is carried out at a fixed engine rotation speed of 2500 rpm. Retrieval of engine performance data using a dynamometer while the exhaust emissions using the GA analyzer. The test results showed the addition of butanol increased the BSFC value by 0.9% and BTE by 2%. However, a decrease occurred in CO emissions by 74.2% and HC by 33.6% compared to pure premium. The use of hot EGR decreased BSFC by 19.3% and BTE by 23.9%. The highest CO emissions were 3.23% while the highest HC emissions of 259 ppm occurred in the use of cold EGR. Keywords : butanol, EGR, BSFC, BTE, exhaust gas emissions

Highlights

  • Peningkatan volume kendaraan menyebabkan peningkatan penggunaan bahan bakar bensin dan polusi udara

  • The increase in vehicle volume causes an increase in the use of gasoline fuel and air pollution

  • The purpose of this study was to observe the effect of butanol on gasoline engines

Read more

Summary

Tinjuaun Teoritis

Brake spesific fuel consumption adalah mengindikasikan banyaknya bahan bakar yang diperlukan untuk menghasilkan satu satuan daya [12]. BSFC adalah konsumsi bahan bakar spesifik (kg/kW.jam), mf adalah laju aliran massa bahan bakar (kg/jam), dan P adalah daya mesin (kW). Adalah mengindikasikan seberapa besar energi dari bahan bakar dikonversi menjadi tenaga. Besarnya brake thermal efficiency (BTE) dapat diformaliskan sebagai berikut [12]:. Dimana BTE adalah efisiensi termal (%), QHV merupakan nilai kalor dari bahan bakar (MJ/kg) dan mf adalah laju aliran massa bahan bakar (kg/jam)

Metode Penelitian
Torsi Maksimum Sistem Bahan Bakar
Hasil dan Pembahasan
Tanpa EGR EGR Panas EGR Dingin
EGR Dingin
Findings
Jelaga Dari Mesin Diesel Berbahan
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call