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The Performance of Diesel Engine Fueled Diesel Oil in Comparison with Heated Pure Vegetable Oils Available in Vietnam

Author

Listed:
  • Anh Tuan Hoang

Abstract

Pure vegetable oils have the greatest promise for alternative fuels for internal combustion engines beside the depletion of conventional petroleum resources. Among various possible options, pure vegetable oils present promising of greener air substitutes for fossil fuels. Pure vegetable oils, due to the agricultural origin, liquidity, ready availability, renewability, biodegradability are able to reduce the CO2 emissions in the atmosphere. Also, in Vietnam, pure vegetable oils such as soybean oil (SoO100), coconut oil (CO100) and sunflower oil (SuO100) are available. The paper presents the results of using heated pure vegetable oils for diesel engine D243 with power of 80 hp (58.88) kW. The results of determining the power (Ne), specific fuel consumption (SFC) and efficiency (n) are used to evaluate the performance of engine. The results show that, the engine power (Ne) is 10%-15% lower, the SFC of engine D243 using pure vegetable oils is 3%-5% higher and the η is 2.5%-6.2% lower compared to diesel oil (DO). Among the pure vegetable oils, the best performance results for D243 diesel engine are obtained from heated pure sunflower oil up to 135oC.

Suggested Citation

  • Anh Tuan Hoang, 2017. "The Performance of Diesel Engine Fueled Diesel Oil in Comparison with Heated Pure Vegetable Oils Available in Vietnam," Journal of Sustainable Development, Canadian Center of Science and Education, vol. 10(2), pages 1-93, March.
  • Handle: RePEc:ibn:jsd123:v:10:y:2017:i:2:p:93
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    Cited by:

    1. Van Quy Nguyen & Huu Cuong Le, 2019. "The Study Influences the Jatropha-Diesel Mixing Ratio to the Formation of Soot Emissions in Diesel Exhaust Gases," European Journal of Engineering and Technology Research, European Open Science, vol. 4(8), pages 80-84, August.
    2. Cao Dao Nam, 2019. "Perspective on Low-Temperature Combustion Applied to the Strategies of NOx Emission Reduction," European Journal of Engineering and Technology Research, European Open Science, vol. 4(1), pages 92-96, January.
    3. Do Thi Nguyet & Phan Thi Thuy Hoa & Pham Minh Chau, 2019. "Biomass Energy and the Benefits It Brings," European Journal of Engineering and Technology Research, European Open Science, vol. 4(8), pages 32-38, August.
    4. Minh Thai Vu & Huu Cuong Le, 2019. "Potential Application of Biofuel Fuel on the Marine Diesel Engines in Vietnam," European Journal of Engineering and Technology Research, European Open Science, vol. 4(8), pages 85-89, August.
    5. Phuoc Quy Phong Nguyen & Van Huong Dong, 2019. "Ocean Energy - A Clean Energy Source," European Journal of Engineering and Technology Research, European Open Science, vol. 4(1), pages 5-11, January.
    6. Van Viet Pham, 2020. "A Study on Particulate Emission Characteristics of Diesel Engine using a Mixture of Commercial Diesel and Biodiesel Based Palm-Oil," European Journal of Engineering and Technology Research, European Open Science, vol. 5(2), pages 146-150, February.
    7. Van Viet Pham, 2020. "A Study on Technical and PM Emission Characteristics on Diesel Engines using Biodiesel Based Palm Oil," European Journal of Engineering and Technology Research, European Open Science, vol. 5(2), pages 151-154, February.
    8. Van Huong Dong, 2018. "Potential Renewable Energy Aiming at the Sustainable Development in Vietnam," European Journal of Engineering and Technology Research, European Open Science, vol. 3(12), pages 112-118, December.
    9. Cao Dao Nam & Danh Chan Nguyen & Van Huong Dong, 2019. "Heating System for the use of Bio-Oils for Marine Engines," European Journal of Engineering and Technology Research, European Open Science, vol. 4(3), pages 157-162, March.
    10. Cao Dao Nam & Van Vang Le, 2018. "The Strategies of NOx Emission Reduction for Diesel Engines," European Journal of Engineering and Technology Research, European Open Science, vol. 3(11), pages 32-36, October.
    11. Van Quy Nguyen & Huu Cuong Le, 2019. "The Characteristics of Carbonyl Compounds Emissions from Small Marine Diesel Engines Using Biodiesel Based Palm Oil," European Journal of Engineering and Technology Research, European Open Science, vol. 4(8), pages 75-79, August.
    12. Van Huong Dong & Danh Chan Nguyen, 2019. "Development of Biofuels for a Green Future," European Journal of Engineering and Technology Research, European Open Science, vol. 4(3), pages 115-120, March.
    13. Phuoc Quy Phong Nguyen & Thi Minh Hao Dong, 2018. "Building the Method for Calculation of Heating System Applied to High-Kinematic Viscosity Fuels," European Journal of Engineering and Technology Research, European Open Science, vol. 3(11), pages 83-88, October.
    14. Van Vang Le, 2018. "Overview of Fuels used for Marine Diesel Engines," European Journal of Engineering and Technology Research, European Open Science, vol. 3(11), pages 53-57, October.
    15. Xuan Phuong Nguyen & Van Huong Dong, 2018. "A Report of the Impacts of Pollutants on Maritime Operation in Vietnam," European Journal of Engineering and Technology Research, European Open Science, vol. 3(10), pages 120-125, October.
    16. Van Vang Le, 2018. "Overview of Fuels used for Marine Diesel Engines," European Journal of Engineering and Technology Research, European Open Science, vol. 3(12), pages 20-24, December.

    More about this item

    JEL classification:

    • R00 - Urban, Rural, Regional, Real Estate, and Transportation Economics - - General - - - General
    • Z0 - Other Special Topics - - General

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