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Article

Honge oil methyl ester and producer gas-fuelled dual-fuel engine operated with varying compression ratios

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Pages 330-340 | Received 25 Feb 2013, Accepted 09 Aug 2013, Published online: 16 Oct 2013

References

  • Banapurmath, N. R. 2008. “Performance, Combustion and Emission Characteristics of a Single Cylinder Direct Injection CI Engine Operated on Dual Fuel Mode Using Honge Oil and Producer Gas.” PhD thesis. 1–195.
  • Banapurmath, N. R. , P. G. Tewari , and R. S. Hosmath . 2008. “Experimental Investigations of a Four-Stroke Single Cylinder Direct Injection Diesel Engine Operated on Dual Fuel Mode with Producer Gas as Inducted Fuel and Honge Oil and Its Methyl Ester (HOME) as Injected Fuels.” Renewable Energy 33 (9): 2007–2018.
  • Banapurmath, N. R. , P. G. Tewari , V. S. Yaliwal , Satish 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 Energy 34 (7): 1877–1884.
  • Banapurmath, N. R. , V. S. Yaliwal , Satish Kambalimath , A. M. Hunashyal , and P. G. Tewari . 2011a. “Effect of Wood Type and Carburetor on the Performance of Producer Gas–Biodiesel Operated Dual Fuel Engines.” Waste and Biomass Valorization 2 (4): 1–11.
  • Banapurmath, N. R. , V. S. Yaliwal , Satish Kambalimath , A. M. Hunashyal , and P. G. Tewari . 2011b. “Effect of Biomass feed stock, carburetor, Compression Ratio and Biodiesel- Ethanol Blends on the Performance of Dual Fuel Engine.” Waste and Biomass Valorization 2 (4): 403–413. doi: 10.1007/s12649-011-9083 .
  • Churchill, D. B. , S. L. Hedden , J. D. Whitney , and L. N. Shaw . 1986. “Chipping Citrus Wood for Gasification.” Applied Engineering in Agriculture 2 (2): 238–240.
  • Deepak, A. , and A. A. Kumar . 2007. “Performance and Emission Characteristics of a Jatropha Oil (Preheated and Blends) in a Direct Injection Compression Ignition Engine.” International Journal of Applied Thermal Engineering 27: 2314–2323.
  • 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.
  • Karim, G. A., R. R. Raine, and W. Jones . 1988. “An Examination of Cyclic Variations in a Dual Fuel Engine.” Society of Automotive Engineers, Paper No. 881661.
  • Muralidharan, K. , and D. Vasudevan . 2011. “Performance, Emission and Combustion Characteristics of a Variable Compression Ratio Engine Using Methyl Esters of Waste Cooking Oil and Diesel Blends.” Applied Energy 88 (11): 3959–3968.
  • Nwafor, O. M. I. 2000. “Effect of Advanced Injection Timing on the Performance of Rapeseed Oil in Diesel Engines.” Renewable Energy 21: 433–444.
  • Nwafor, O. M. I. 2003. “The Effect of Elevated Fuel Inlet Temperature on Performance of Diesel Engine Running on Neat Vegetable Oil at Constant Speed Conditions.” Renewable Energy 28: 171–181.
  • Nouni, M. R. , S. C. Mullick , and T. C. Kandpal . 2007. “Biomass Gasifier Projects for Decentralized Power Supply in India: A Financial Evaluation.” Energy Policy 35: 1373–1385.
  • Parikh, P. P. , A. G. Bhave , D. V. Kapse , and S. Shashikantha . 1989. “Study of Thermal and Emission Performance of Small Gasifier–Dual-Fuel Engine Systems.” Biomass 19: 75–97.
  • Raheman, H. , and S. V. Ghadge . 2008. “Performance of Diesel Engine with Biodiesel at Varying Compression Ratio and Ignition Timing.” Fuel 87: 2659–2666.
  • 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 Technology 87: 849–853.
  • Ravindranath, N. H. , and P. Balachandra . 2009. “Sustainable Bioenergy for India: Technical, Economic and Policy Analysis.” Energy 34: 1003–1013.
  • Roy, Murari Mohon, Eiji Tomita, Nobuyuki Kawahara, Yuji Harada, and Atsushi Sakane . 2009. “Effect of Fuel Injection Parameters on Engine Performance and Emissions of a Supercharged Producer Gas–Diesel Dual Fuel Engine.” Society of Automotive Engineers. Paper No. 2009-01-1848.
  • 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 Reviews 13: 1151–1184.
  • Samir, J. D. , B. B. Lalit , and B. T. Shashikant . 2008. “Investigation on Performance and Emission Characteristics of CI Engine Fuelled with Producer Gas and Esters of Hingan (Balanites) Oil in Dual Fuel Mode.” International Journal of Mechanical Systems Science and Engineering 2 (3): 148–153.
  • Sayin, Cenk , and Metin Gumus . 2011. “Impact of Compression Ratio and Injection Parameters on the Performance and Emissions of a DI Diesel Engine Fueled with Biodiesel Blended Diesel Fuel.” Applied Thermal Engineering 31: 3182–3188.
  • Scholl, K. W., and S. C. Sorenson . 1993. “Combustion Analysis of Soyabean Oil Methyl Ester in a Direct Injection Diesel Engine.” Society of Automotive Engineers. Paper No. 930-934.
  • Selim, Mohamed Y. E. 2004. “Sensitivity of Dual Fuel Engine Combustion and Knocking Limits to Gaseous Fuel Composition.” Fuel 45 (3): 411–425.
  • 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 Energy 32: 1565–1580.
  • Sridhar, G. , H. V. Sridhar , S. Dasappa , P. J. Paul , N. K. S. Rajan , and H. S. Mukunda . 2005. “Development of producer gas engines.” Proceedings of the Institution Mechanical Engineers, Part D: Journal of Automobile Engineering 219: 423–438.
  • Skoulou, V. , G. Koufodimos , Z. Samaras , and A. Zabaniotou . 2008. “Low Temperature Gasification of Olive Kernels in a 5-kW Fluidized Bed Reactor for H2-Rich Producer Gas.” International Journal of Hydrogen Energy 33: 6515–6524.
  • Yaliwal, V. S. , N. R. Banapurmath , S. R. Daboji , 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 Technology 2 (10): 5938–5948.

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