THERMAL SCIENCE
International Scientific Journal
EFFECTS OF ANTIOXIDANT ADDITIVES ON EXHAUST EMISSIONS REDUCTION IN COMPRESSION IGNITION ENGINE FUELED WITH METHYL ESTER OF ANNONA OIL
ABSTRACT
In this present study, biodiesel is a cleaner burning alternative fuel to the Neat diesel fuel. However, several studies are pointed out that increase in NOx emission for biodiesel when compared with the Neat diesel fuel. The aim of the present study is to analyze the effect of antioxidant (p-phenylenediamine) on engine emissions of a Diesel engine fuelled with methyl ester of annona oil. The antioxidant is mixed in various concentrations (0.010 to 0.040% (w/w)) with methyl ester of annona oil. Result shows that antioxidant additive mixture (MEAO+P200) is effective in control of NOx and HC emission of methyl ester of annona oil fuelled engine without doing any engine modification.
KEYWORDS
PAPER SUBMITTED: 2015-09-12
PAPER REVISED: 2016-01-08
PAPER ACCEPTED: 2016-02-26
PUBLISHED ONLINE: 2016-11-13
THERMAL SCIENCE YEAR
2016, VOLUME
20, ISSUE
Supplement 4, PAGES [S1029 - S1035]
- Anand, R., et al., Performance Emission and Combustion Characteristics of a Diesel Engine Fueled with Biodiesel Produced fromWaste Cooking Oil, SAE Technical Paper 2010-01-0478, 2010
- Ramalingam, S., Rajendran, S., Influence of Injection Pressure on Performance, Emission and Combustion Characteristics of Annona Methyl Ester Operated DI Diesel Engine, Oxidation Communications 38 (2015), 2, pp. 818-829
- Ramalingam, S., et al., Effect of Oxygenated Additives on Exhaust Emissions Reduction in Di Diesel Engine Using Biodiesel and its Blends, Oxidation Communications, 38 (2015), 2, pp. 841-851
- Babu, A., Devaradjane, G., Vegetable Oils and their Derivatives as Fuels for CI Engines: an Overview, SAE Technical paper 2003-01-0767, 2003
- Demirbas, A., et al., Progress and Recent Trends in Biodiesel Fuels, Energy Conversion Management, 50 (2009), Jan., pp. 14-34
- Leung, D. Y. C., et al., A Review on Biodiesel Production Using Catalyzed Transesterification, Applied Energy, 87 (2010), 4, pp. 1083-1095
- Gogoi1, T. K., et al., Combustion Analysis of Jatropha Methyl Ester and its Ethanol and Acetone Blends in a Diesel Engine, International Journal of Emerging Technology and Advanced Engineering, 3 (2013), 3, pp. 51-57
- Franco, A., et al., Performance and Emission Study of Sardine Fish Oil Biodiesel in a Diesel Engine, Oxidation Communications, 37 (2014), 3, pp. 802-816
- Hanumantha Rao,Y.V., et al., Experimental Investigations on Jatropha Biodiesel and Additive in Diesel Engine, Indian Journal of Science and Technology, 2 (2009), 4, pp. 25-31
- Jindal, S., et al., Experimental Investigation of the Effect of Compression Ratio and Injection Pressure in a Direct Injection Diesel Engine Running on Jatropha Methyl Ester, Applied Thermal Engineering, 30 (2010), 5, pp. 442-448
- Van Gerpen, J. H., et al., Biodiesel: An Alternative Fuel for Compression Ignition Engines, American Society of Agricultural and Biological Engineers, 31 (2007), ASAE 913C0107, pp. 1-22
- Kjarstad, J., Johnsson, F., Resources and Future Supply of Oil, EnergyPolicy, 37 (2009), 2, pp. 441-464
- Luis, M., et al., Performance Study about Biodiesel Impact on Buses Engines Using Dynamometer Tests and Fleet Consumption Data, Energy Conversion and Management, 60 (2012), Aug., pp. 2-9
- Mohanty, C., et al., An Experimental Investigation on the Combustion, Performance and Emissions of a Diesel Engine Using Vegetable Oil-Diesel Fuel Blends, SAE Technical paper 2011-01-1187, 2011
- Kocak, M. S., et al., Experimental Study of Emission Parameters of Biodiesel Fuels Obtained from Canola, Hazelnut, and Waste Cooking Oils, Energy Fuels, 21 (2007), 6, pp. 3622-3626
- Buyukkaya, E., Effects of Biodiesel on a DI Diesel Engine Performance, Emission and Combustion Characteristics, Fuel, 89 (2010), 10, pp. 3099-3105
- Canakci, M., Combustion Characteristics of a Turbocharged DI Compression Ignition Engine Fueled with Petroleum Diesel Fuels and Biodiesel, Bioresource Technology, 98 (2007), 4, pp. 1167-1175
- Sahoo, P. K., Comparative Evaluation of Performance and Emission Characteristics of Jatropha, Karanja and Polanga Based Biodiesel as Fuel in a Tractor Engine, Fuel, 88 (2009), 9, pp. 1698-1707
- Varatharajan, K., et al., Mitigation of NOx Emissions from a Jatropha Biodiesel Fuelled DI Diesel Engine Using Antioxidant Additives, Fuel, 90 (2011), 8, pp. 2721-2725
- Balaji, G., Cheralathan, M., Experimental Reduction of NOX and HC Emissions in a CI Engine Fuelled with Methyl Ester of Neem Oil Using P-Phenylenediamine Antioxidant, JSIR, 73 (2014), 3, pp. 177-180
- Balaji, G., Cheralathan, M., Experimental Investigation to Reduce Emissions of CI Engine Fuelled with Methyl Ester of Cottonseed Oil Using Antioxidant, IJAE, 35 (2014), 1, pp. 13-19
- Balaji, G., Cheralathan, M., Study of Antioxidant Effect on Oxidation Stability and Emissions in Methyl Ester of Neem Oil Fuelled DI Diesel Engine, Journal of the Energy Institute, 87 (2014), 3, pp. 188-195
- Ileri, E., Kocar, G., Experimental Investigation of the Effect of Antioxidant Additives on NOx Emissions of a Diesel Engine Using Biodiesel, Fuel, 125 (2014), June, pp. 44-49
- Balaji, G., Cheralathan, M., Experimental Investigation of Antioxidant Effect on Oxidation Stability and Emissions in a Methyl Ester of Neem Oil Fueled DI Diesel Engine, Renewable Energy, 74 (2015), 2, pp. 910-916
- Ileri, E., Kocar, G., Effects of Antioxidant Additives on Engine Performance and Exhaust Emissions of a Diesel Engine Fuelled with Canola Methyl Ester-Diesel Blend, Energy Conversion and Management, 76 (2013), Dec., pp. 145-154
- Atmanli, A., et al., Experimental Investigation of Engine Performance and Exhaust Emissions of a Diesel Engine Fuelled with Diesel -n-Butanol-Vegetable Oil Blends, Energy Conversion and Management, 81 (2014), May, pp. 312-321
- Rizwanul Fattah, I. M., et al., Effect of Antioxidant on the Performance and Emission Characteristics of a Diesel Engine Fuelled with Palm Biodiesel Blends, Energy Conversion and Management, 79 (2014), 3, pp. 265-272
- Shahnaj, P., et al., Toxicological Evaluation of Annotemoyin-1 Isolated from Annonasqumosa Linn, on Long Evan's Rats, Pakistan Journal of Biological Science, 6 (2003), 18, pp. 1593-1596
- Shirwaikar, A., et al., In Vitro Antioxidant Studies of Annonasquamosa Linn. Leaves, Indian J Exp Biol., 42 (2004), 8, pp. 803-807