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Articles

Effect of bioethanol and thermal barrier coating on the performance of dual fuel engine operating on Honge oil methyl ester (HOME) and producer gas induction

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Pages 349-365 | Received 23 Sep 2013, Accepted 25 Nov 2014, Published online: 12 Feb 2015

References

  • Anand, K., R. P.Sharma, and P. S.Mehta. 2011. “Experimental Investigations on Combustion, Performance and Emissions Characteristics of Neat Karanja biodiesel and Its Methanol Blend in a Diesel Engine.” Biomass and Bioenergy35: 533–541.
  • Banapurmath, N. R., and P. G.Tewari. 2008. “Performance of a Low Heat Rejection Engine Fuelled with Low Volatile Honge Oil and Its Methyl Ester (HOME).” Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy222 (3): 323–330.
  • Banapurmath, N. R., P. G.Tewari, and R. S.Hosmath. 2008. “Experimental Investigation of Four Stroke Direct Injection Diesel Engine Operated on Dual Fuel Mode with Producer Gas as a Inducted Fuel and Honge Oil and Honge Oil Methyl Ester as Injected Fuels.” Renewable Energy33 (9): 2007–2018.
  • Banapurmath, N. R., P. G.Tewari, and V. VinodKumar. 2009. “Combustion and Emission Characteristics of a Direct Injection CI Engine When Operated on Marotti Oil Methyl Ester and Blends of Marotti Oil Methyl Ester and Diesel.” Sustainable Engineering2 (3): 192–200.
  • Banapurmath, N. R., R. S.Hosmath, V. S.Yaliwal, and P. G.Tewari. 2011. “Improving Fuel Efficiency of Compression Ignition Engines Fueled with Vegetable Oil.” In Fuel Efficiency, edited by J. K.Bernard, 67–100. New York: NOVA Science Publishers Inc.
  • Banapurmath, N. R., P. G.Tewari, V. S.Yaliwal, S.Kambalimath, and Y. H.Basavarajappa. 2009. “Combustion Characteristics of a 4-Stroke CI Engine Operated on Honge Oil, Neem and Rice Bran Oils When Directly Injected and Dual Fuelled with Producer Gas Induction.” Renewable Energy34: 1877–1884.
  • Banapurmath, N. R., V. S.Yaliwal, S.Kambalimath, A. M.Hunashyal, and P. G.Tewari. 2011. “Effect of Wood Type and Carburetor on the Performance of Producer Gas-Biodiesel Operated Dual Fuel Engines.” Waste and Biomass Valorization2 (4): 403–413. doi:10.1007/s12649-011-9083-5.
  • Dasappa, S., and H. V.Sridhar. 2011. “Performance of a Diesel Engine in a Dual Fuel Mode Using Producer Gas for Electricity Power Generation.” Sustainable Energy1: 1–10. 10.1080/14786451.2011.605945.
  • Dien, B. S., X. L.Li, L. B.Iten, D. B.Jordan, N. N.Nichols, P. J.O'Bryan, and M. A.Cotta. 2006. “Enzymatic saccharification of Hot-Water Pretreated Corn Fiber for Production of Monosaccharides.” Enzyme and Microbial Technology39 (5): 1137–1144.
  • Ekrem, B., E.Tahsin, and C.Muhammet. 2006. “Effects of Thermal Barrier Coating on Gas Emissions and Performance of a LHR Engine with Different Injection Timings and Valve Adjustments.” Energy Conversion Management47: 1298–1310. http://www.saltmarch.com/pressRelease2.html.
  • Jaichandar, S., and P. Tamilporai. 2003. “Low Heat Rejection Engines – An Overview.” Society of Automotive Engineers, Paper No. 2003-01-0405.
  • Kamo, R., N. S.Mavinahally, L.Kamo, W.Bryzik, and E. E.Schwartz. 1999. “Injection Characteristics that Improve Performance of Ceramic Coated Diesel Engines.” Society of Automotive Engineers, Paper 1999-01-0972. https://doi.org/doi:10.4271/1999-01-0972.
  • Karim, G. A., W. Jones, and R. R. Raine. 1989. “An Examination of the Ignition Delay Period in Dual Fuel Engines.” Society of Automotive Engineers, Paper No. 892140.
  • Liang, Xuezheng, ShanGao, JiangaoYang, and MingyuanHe. 2009. “Highly Efficient Procedure for the Transesterification of Vegetable Oil.” Renewable Energy34 (10): 2215–2217.
  • Likos, B., T. J. Callahan, and C. A. Moses. 1982. “Performance and Emissions of Ethanol and Ethanol–Diesel Blends in Direct-Injected and Pre-Chamber Diesel Engines.” Society of Automotive Engineers, Paper No.: 821039.
  • Miller, Robert A.1987. “Current Status of Thermal Barrier Coatings – An Overview.” Surface and Coatings Technology30: 1–11.
  • Palash, S. M., H. H.Masjuki, M. A.Kalam, B. M.Masum, A.Sanjid, and M. J.Abedin. 2013. “State of the Art of NOx Mitigation Technologies and Their Effect on the Performance and Emission Characteristics of Biodiesel-Fueled Compression Ignition Engines.” Energy Conversion and Management76: 400–420.
  • Papagiannakis, R. G., and D. T.Hountalas. 2003. “Experimental Investigation Concerning the Effect of Natural Gas Percentage on Performance and Emissions of a DI Dual Fuel Diesel Engine.” Applied Thermal Engineering23 (3): 353–365.
  • Parikh, P. P., A. G.Bhave, D. V.Kapse, and Shashikantha. 1989. “Study of Thermal and Emission Performance of Small Gasifier-Dual-Fuel Engine Systems.” Biomass19: 75–97.
  • Park, S. H., S. H.Yoon, H. K.Suh, and C. S.Lee. 2008. “Effect of the Temperature Variation on Properties of Biodiesel and Biodiesel–Ethanol Blends Fuels.” Oil and Gas Science and Technology – Review, IFP63 (6): 737–745.
  • Pérez, J. A., I.Ballesteros, M.Ballesteros, F.Saez, M. J.Negro, and P.Manzanares. 2008. “Optimizing Liquid Hot Water Pretreatment Conditions to Enhance Sugar Recovery from Wheat Straw for Fuel–Ethanol Production.” Fuel87: 3640–3647.
  • Rakopoulos, C. D., and E. G.Giakoumis. 2006. “Second-Law Analyses Applied to Internal Combustion Engines Operation.” Progress in Energy and Combustion Science32 (1): 2–47.
  • Ramadas, A. S., S.Jayaraj, and C.Muralidharan. 2006. “Power Generation Using Coir Pith and Wood Derived Producer Gas in a Diesel Engine.” Fuel Processing Technology87: 849–853.
  • Roy, Murari Mohon, EijiTomita, NobuyukiKawahara, YujiHarada, and AtsushiSakane. 2009. “Performance and Emission Comparison of a Supercharged Dual-Fuel Engine Fueled by Producer Gases with Varying Hydrogen Content.” Hydrogen Energy34: 7811–7822.
  • Sahoo, B. B., and U. K.Saha. 2011. “Theoretical Performance Limits of a Syngase Diesel Fueled Compression Ignition Engine from Second Law Analysis.” Energy36 (2): 760–769.
  • Sahoo, B. B., N.Sahoo, and U. K.Saha. 2009. “Effect of Engine Parameters and Type of Gaseous Fuel on the Performance of Dual-Fuel Gas Diesel Engines – A Critical Review.” Renewable and Sustainable Energy Reviews13: 1151–1184.
  • Singh, R. N., S. P.Singh, and B. S.Pathak. 2007. “Investigations on Operation of CI Engine Using Producer Gas and Rice Bran Oil in Mixed Fuel Mode.” Renewable Energy32: 1565–1580.
  • Vivek, and A. K.Guptha. 2004. “Biodiesel from Karanja Oil.” Journal of Scientific and Industrial Research63: 39–47.
  • Wategave, S. P., M. S. Sawant, M. S. Tandale, G. Suresh, V. S. Yaliwal, N. R. Banapurmath, and P. G. Tewari. 2013. “Effect of Injection Timing, Injector Opening Pressure and Nozzle Geometry on the Performance of a Compression Ignition Engine Operated on Non-Edible Oil Methyl Esters from Different Sources.” Sustainable Engineering. 10.1080/19397038.2013.777134.
  • Xue, Jinlin, GriftT.E., and HansenA.C.. 2011. “Effect of Biodiesel on Engine Performances and Emissions.” Renewable and Sustainable Energy Reviews15 (2): 1098–1116.
  • Yaliwal, V. S., S. R.Daboji, N. R.Banapurmath, and P. G.Tewari. 2010. “Production and Utilization of Renewable Liquid Fuel in a Single Cylinder Four Stroke Direct Injection Compression Ignition Engine.” International Journal of Engineering Science and Technology2 (10): 5938–5948.
  • Yaliwal, V. S., K. M. Nataraj, N. R. Banapurmath, and P. G. Tewari. 2013. “Honge Oil Methyl Ester and Producer Gas-Fuelled Dual-Fuel Engine Operated with Varying Compression Ratios.” Sustainable Engineering. 10.1080/19397038.2013.837108.

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