Effect of a new design electronic control system on the emissions improve for diesel engine operation by (Diesel + LPG)

被引:2
作者
Al-Kaabi M.M. [1 ]
Al-Zuhairy M.S. [2 ]
Balla H.H. [3 ]
机构
[1] Department of Power Mechanics, Technical College Najaf, Al-Furat Al-Awsat Technical University, Najaf
[2] Department of Civil Engineering, Technical College Najaf, AI-Furat Al-Awsat Technical University, Najaf
[3] Najaf Technical Institute, Al-Furat Al-Awsat Technical University, Najaf
来源
Al-Kaabi, Mohanad M. (hyderballa@atu.edu.iq) | 1600年 / International Information and Engineering Technology Association卷 / 15期
关键词
CO[!sub]2[!/sub; Diesel engine; Diesel fuel; Dual-fuel; Emission; HC; LPG; NOx;
D O I
10.18280/ijdne.150414
中图分类号
学科分类号
摘要
Diesel engines are important and widely used in many fields in industry, agriculture, transportation, and electricity, but the disadvantages of these engines are environmental pollution due to exhaust gas emissions as well as the high cost of diesel fuel. These defects made the topic an important research topic to search for less polluting and less expensive fuel to use it in diesel engines, and this makes LPG a good candidate for diesel supplements because it contains several technical advantages in this regard, being environment friendly and has a high heat value to increase energy production And also its price is cheap compared to diesel fuel. In this study, an electronic system was designed to control the LPG injector and a magnetic sensor was installed on top of a single-cylinder and air-cooled diesel engine head. Tested using at two-stage first diesel fuel D-100 and second stage, dual-fuel in three modes (LPG-25, LPG-50, and LPG-75). The test was under loads (0%, 25%, 50%, 75% and 100%) at different speeds (1000, 1500 and 2000 rpm). A decrease in emission ratios (NOx, HC, CO, and CO2) is observed in all operating modes with LPG, and the best emission reduction mode is LPG-75. As for O2 gas, the results showed almost the same in diesel case. © 2020 WITPress. All rights reserved.
引用
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页码:565 / 572
页数:7
相关论文
共 39 条
[1]  
Resitolu I.A., Altinisik K., Keskin A., The pollutant emissions from diesel-engine vehicles and exhaust aftertreatment systems, Clean Technologies and Environmental Policy, 17, 1, pp. 15-27, (2015)
[2]  
Potter S., Transport energy and emissions: urban public transport, Handbook of transport and the environment, 4. Handbooks in Transport, pp. 247-262, (2003)
[3]  
Johnson T., Diesel engine emissions and their control: An overview, Platin. Met. Rev, 52, 1, pp. 23-37, (2008)
[4]  
Tiwari D.R., Sinha G.P., Performance and emission study of LPG diesel dual fuel engine, Int. J. Eng. Adv. Technol, 3, 3, pp. 198-203, (2014)
[5]  
Nemoianu L., Pana C., Negurescu N., Cernat A., Fuiorescu D., Nutu C., On LPG use at diesel engine: Pollutant emissions level and cycle variability aspects, IOP Conference Series: Materials Science and Engineering, 444, 7, pp. 1-7, (2018)
[6]  
Rosha P., Bharj R.S., Gill K.J.S., Performance and emission characteristics of Diesel + LPG dual fuel engine with exhaust gas recirculation, International Journal of Science, Engineering and Technology Research (IJSETR), 3, 10, pp. 2570-2574, (2014)
[7]  
Qi D.H., Bian Y.Z., Ma Z.Y., Zhang C.H., Liu S.Q., Combustion and exhaust emission characteristics of a compression ignition engine using liquefied petroleum gas - Diesel blended fuel, Energy Conversion and Management, 48, 2, pp. 500-509, (2007)
[8]  
Aydin M., Irgin A., Celik M.B., The impact of diesel/LPG dual fuel on performance and emissions in a single cylinder diesel generator, Appl. Sci, 8, 5, pp. 1-14, (2018)
[9]  
Acharya S.K., Jena S.P., Performance and emission analysis of a CI engine in dual mode with LPG and karanja oil methyl ester, SAE Tech. Pap, 2013, pp. 1-7, (2013)
[10]  
Vijayabalan P., Nagarajan G., Performance, emission and combustion of LPG diesel dual fuel engine using glow plug, Jordan Journal of Mechanical and Industrial Engineering, 3, 2, pp. 105-110, (2009)