Res. Agr. Eng., 2022, 68(3):150-156 | DOI: 10.17221/63/2020-RAE
Impacts of HHO gas utilisation on the operating parameters in internal combustion enginesOriginal Paper
- Department of Vehicles and Ground Transport, Faculty of Engineering, University of Life Sciences Prague, Prague, Czech Republic
Social pressure is forcing manufacturers to make huge investments in development in order to reduce the harmful emissions of passenger cars. However, there are also cheaper solutions that promise to reduce pollutants with minimal investment. One way is to enrich the fuel/air mixture with HHO gas (oxyhydrogen with a 2:1 ratio of hydrogen and oxygen). HHO gas is produced by the electrolysis of water using the vehicle's electrical system. This study investigated the impact of an HHO generator on the operating parameters of an internal combustion engine. The testing took place on two levels. The first was a laboratory test with an spark ignition (SI) engine connected to a dynamometer where complete load characteristics were measured and the function of the engine in various steady-state modes was monitored. The second was a laboratory test of a compression ignition (CI) engine vehicle in a chassis dynamometer where the engine behaviour was observed during simulated driving. During the measurements, it was clearly demonstrated that there is a serious change in the fuel/air mixture. The HHO gas mixture caused engine control instability. The control unit was not able to sufficiently regulate the engine parameters. During the test on chassis dynamometer, the steady-state regimes did not last long enough for this instability to occur.
Keywords: CO2; fuel consumption; hydrogen; internal combustion engine; NOX; particulate matters
Published: March 15, 2022 Show citation
References
- Al-Rousan A.A. (2010): Reduction of fuel consumption in gasoline engines by introducing HHO gas into intake manifold. Internation Journal of Hydrogen Energy, 35: 12930-12935.
Go to original source...
- Bari S., Mohammad Esmaeil M. (2010): Effect of H2/O2 addition in increasing the thermal efficiency of a diesel engine. Fuel, 89: 378-383.
Go to original source...
- Becerra-Ruiz J.D., Gonzalez-Huerta R.G., Gracida J., AmaroReyes A., Macias-Bobadilla G. (2019): Using green-hydrogen and bioethanol fuels in internal combustion engines to reduce emissions. Internation Journal of Hydrogen Energy, 44: 12324-12332.
Go to original source...
- Dahake M.R., Patil S.D., Patil S.E. (2016): Effect of hydroxy gas addition on performance and emissions of diesel. Internation Research Journal of Engineering and Technology, 3: 756-760.
- De Silva S., Senevirathne L., Warnasooriya T. (2015): HHO generator - An approach to increase fuel efficiency in spark ignition engines. European Journal of Advance in Engineering and Technology, 15: 1-7.
- Dhananjay B., Jay O., Bhavin H., Guarang A. (2015): An experimental analysis of S.I engine performance with HHO as a fuel. International Journal of Engineering Research & Technology, 4: 608-615.
Go to original source...
- EL-Kassaby M.M., Eldrainy Y.A., Khidr M.E., Khidr K.I. (2016): Effect of hydroxy (HHO) gas addition on gasoline engine performance and emissions. Alexandria Engineering Journal, 55: 243-251.
Go to original source...
- Kolbenev I.L. (1993): Hydrogen fuel in automobiles and tractors. Internation Journal of Hydrogen Energy, 18: 409-420.
Go to original source...
- Lilik G.K., Zhang H., Herreros J.M., Haworth D.C., Boehman A.L. (2010): Hydrogen assisted diesel combustion. Internation Journal of Hydrogen Energy, 35: 4382-4398.
Go to original source...
- Musmar S.A., Al-Rousan A.A. (2011): Effect of HHO gas on combustion emissions in gasoline engines. Fuel, 90: 3066-3070.
Go to original source...
- Nabil T., Khairat Dawood M.M. (2019): Enabling efficient use of oxy-hydrogen gas (HHO) in selected engineering applications; transportation and sustainable power generation. Journal of Cleaner Production, 237: 117798.
Go to original source...
- Rimkus A., Matijošius J., Bogdevičius M., Bereczky Á., Török Á. (2018): An investigation of the efficiency of using O2 and H2 (hydrooxile gas - HHO) gas additives in a CI engine operating on diesel fuel and biodiesel. Energy, 152: 640-651.
Go to original source...
- Sharma D., Pathak D.K., Chhikara K. (2015): Performance Analysis of a four stroke multi- cylinder spark ignition engine powered by a hydroxy gas booster. Journal of Aeronautical and Automotive Engineering, 2: 11-15.
- Trujillo-Olivares I., Soriano-Moranchel F., Álvarez-Zapata L.A., de Guadalupe González-Huerta R., SandovalPineda J.M. (2019): Design of alkaline electrolyser for integration in diesel engines to reduce pollutants emission. Internation Journal of Hydrogen Energy, 44: 25277-25286.
Go to original source...
- Yilmaz A.C., Uludamar E., Aydin K. (2010): Effect of hydroxy (HHO) gas addition on performance and exhaust emissions in compression ignition engines. Internation Journal of Hydrogen Energy, 35: 11366-11372.
Go to original source...
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