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Articles

A study of emission characteristic, deposits, and lubrication oil degradation of a diesel engine running on preheated vegetable oil and diesel oil

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Pages 611-625 | Received 05 Jun 2018, Accepted 19 Aug 2018, Published online: 25 Sep 2018

References

  • Abdulkareem, A. S., A. S. Afolabi, S. O. Ahanonu, and T. Mokrani. 2014. Effect of treatment methods on used lubricating oil for recycling purposes. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 36 (9):966–73. Taylor & Francis.
  • Acharya, S. K., R. K. Swain, and M. K. Mohanty. 2014. Emission analysis of using preheated karanja and kusum oil. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 36 (12):1358–65. Taylor & Francis.
  • Agarwal, A. K., and A. Dhar. 2010. Karanja oil utilization in a direct-injection engine by Preheating. Part 2: Experimental investigations of engine durability and lubricating oil properties. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 224 (1):85–97. London, UK: Sage Publications.
  • Agarwal, A. K., S. Som, P. C. Shukla, H. Goyal, and D. Longman. 2015. In-Nozzle Flow and spray characteristics for mineral diesel, Karanja, and Jatropha Biodiesels. Applied Energy 156:138–48. Elsevier.
  • Agarwal, D., S. K. Singh, and A. K. Agarwal. 2011. Effect of exhaust gas recirculation (EGR) on performance Emissions, Deposits and Durability of a Constant Speed Compression Ignition Engine. Applied Energy 88 (8):2900–2907. doi:10.1016/j.apenergy.2011.01.066.
  • Ali, Y. 1995. Beef tallow as a biodiesel fuel. Lincoln: The University of Nebraska.
  • Anandavelu, K., N. Alagumurthi, and C. G. Saravannan. 2014. Performance, combustion, and emission characteristics of a low heat loss diesel engine operated on eucalyptus oil and diesel fuel blends. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 36 (15):1697–709.
  • Bi, X., X. Qiao, and Chia-fon F. Lee. 2016. Combustion and soot emission characteristics of soybean biodiesel in constant volume chamber. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 38 (6):842–49. doi:10.1080/15567036.2013.828134.
  • Boopathi, D., S. Thiyagarajan, V. Edwin Geo, S. Madhankumar, and R. Gheith. 2018. Effect of geraniol on performance, emission and combustion characteristics of CI engine fuelled with gutter oil obtained from different sources. Energy 157:391-401.
  • Demirbas, A. 2017. Tomorrow’s biofuels: Goals and hopes. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 39 (7):673–79. Taylor & Francis.
  • George, S., S. Balla, V. Gautam, and M. Gautam. 2007. Effect of diesel soot on lubricant oil viscosity. Tribology International 40 (5):809–18. Elsevier.
  • Guo, H., X. Wang, and S. Zhou. 2015. A transportation problem with uncertain costs and random supplies. International Journal of E-Navigation and Maritime Economy 2:1–11.
  • Haseeb, A. S. M. A., M. A. Fazal, M. I. Jahirul, and H. H. Masjuki. 2011. Compatibility of automotive materials in biodiesel: A review. Fuel 90 (3):922–31. Elsevier.
  • Hazar, H., and H. Aydin. 2010. Performance and emission evaluation of a CI engine fueled with preheated Raw Rapeseed Oil (RRO)–Diesel blends. Applied Energy 87 (3):786–90. Elsevier.
  • Hoang, A. T. 2017. The performance of diesel engine fueled diesel oil in comparison with heated pure vegetable oils available in vietnam. Journal of Sustainable Development 10 (2):93–103.
  • Hoang, A. T. 2018. A design and fabrication of heat exchanger for recovering exhaust gas energy from small diesel engine fueled with preheated bio-oils. International Journal of Applied Engineering Research 13 (7):5538–45.
  • Hoang, A. T., L. H. Nguyen, and D. N. Nguyen. 2018. A study of mechanical properties and conductivity capability of CU-9NI-3SN ALLOY. International Journal of Applied Engineering Research 13 (7):5120–26.
  • Hoang, A. T., M. M. Noor, and X. D. Pham. 2018. Comparative analysis on performance and emission characteristic of diesel engine fueled with heated coconut oil and diesel fuel. International Journal of Automotive and Mechanical Engineering 15 (1):5110–25. doi:10.15282/ijame.15.1.2018.16.0395.
  • Hoang, A. T., and V. T. Nguyen. 2017. Emission characteristics of a diesel engine fuelled with preheated vegetable oil and biodiesel. Philippine Journal of Science 146 (4):475–82.
  • Hoang, A. T., and V. V. Pham. 2018. Impact of jatropha oil on engine performance, emission characteristics, deposit formation, and lubricating oil degradation. Combustion Science and Technology. doi:10.1080/00102202.2018.1504292.
  • Hoang, T. A., and V. L. Vang. 2017. The performance of a diesel engine fueled with diesel oil, biodiesel and preheated coconut oil. International Journal of Renewable Energy Development 6 (1):1. Diponegoro University.
  • Labecki, L., A. Cairns, J. Xia, A. Megaritis, H. Zhao, and L. C. Ganippa. 2012. Combustion and emission of rapeseed oil blends in diesel engine. Applied Energy 95:139–46. Elsevier.
  • Le, T. Nhung, M. Khanh Pham, A. Tuan Hoang, T. N. Mai Bui, and D. Nam Nguyen. 2018. Microstructure change for multi-pass welding between austenitic stainless steel and carbon steel. Journal of Mechanical Engineering Research & Developments (JMERD) 41 (2):97–102. doi:10.26480/jmerd.02.2018.97.102.
  • Le, A. T., P. H. Tuyen, and V. D. S. Tho. 2017. Alternative fuels for internal combustion engine. Hanoi, Vietnam: Bach Khoa Publishing House.
  • Liaquat, A. M., H. H. Masjuki, M. A. Kalam, M. A. Fazal, A. F. Khan, H. Fayaz, and M. Varman. 2013. Impact of palm biodiesel blend on injector deposit formation. Applied Energy 111:882–93. Elsevier.
  • Ma, W., B. Liu, R. Zhang, G. Tianbao, J. Xiang, L. Zhong, G. Chen, M. Longlong, Z. Cheng, and L. Xiangping. 2018. Co-upgrading of raw bio-oil with kitchen waste oil through Fluid Catalytic Cracking (FCC). Applied Energy 217:233–40. Elsevier.
  • Maleque, M. A., H. H. Masjuki, and A. S. M. A. Haseeb. 2000. Effect of mechanical factors on tribological properties of palm oil methyl ester blended lubricant. Wear 239 (1):117–25. Elsevier.
  • Manchanda, T., R. Tyagi, and D. K. Sharma. 2018. Comparison of fuel characteristics of green (renewable) diesel with biodiesel obtainable from algal oil and vegetable oil. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 40 (1):54–59. Taylor & Francis.
  • Messerer, A., R. Niessner, and U. Pöschl. 2006. Comprehensive kinetic characterization of the oxidation and gasification of model and real diesel soot by nitrogen oxides and oxygen under engine exhaust conditions: measurement, Langmuir–Hinshelwood, and Arrhenius parameters. Carbon 44 (2):307–24. doi:10.1016/j.carbon.2005.07.017.
  • Nayak, C., S. K. Acharya, and R. K. Swain. 2016. Emission analysis of different blends of karanja oil with producer gas in a twin-cylinder diesel engine in dual fuel mode. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 38 (6):821–27. Taylor & Francis.
  • Olomolehin, Y., R. Kapadia, and H. Spikes. 2010. Antagonistic interaction of antiwear additives and carbon black. Tribology Letters 37 (1):49. doi:10.1007/s11249-009-9489-4.
  • Pham, M. K., D. N. Nguyen, and A. T. Hoang. 2018. Influence of vanadium content on the microstructure and mechanical properties of high-manganese steel. International Journal of Mechanical & Mechatronics Engineering 18 (2):141–47.
  • Ramya, G., T. Sivakumar, M. Arif, and Z. Ahmed. 2015. Application of microporous catalysts in the production of biofuels from non edible vegetable oils and used restaurant oil. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 37 (8):878–85. Taylor & Francis.
  • Satyanarayana, M., and C. Muraleedharan. 2012. Experimental studies on performance and emission characteristics of neat preheated vegetable oils in a di diesel engine. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 34 (18):1710–22. Taylor & Francis.
  • Singh, S. K., A. K. Agarwal, and M. Sharma. 2006. Experimental investigations of heavy metal addition in lubricating oil and soot deposition in an EGR operated engine. Applied Thermal Engineering 26 (2–3):259–66. doi:10.1016/j.applthermaleng.2005.05.004.
  • Sinha, S., and A. K. Agarwal. 2010. Experimental investigation of the effect of biodiesel utilization on lubricating oil degradation and wear of a transportation cidi engine. Journal of Engineering for Gas Turbines and Power 132 (4):42801. doi:10.1115/1.3077659.
  • Tran, V. D., A. T. Le, V. H. Dong, and A. T. Hoang. 2017. Methods of operating the marine engines by ultra-low sulfur fuel to aiming to satisfy MARPOLAnnex VI. Advances in Natural and Applied Sciences 11 (12):34–40.
  • Vallinayagam, R., S. Vedharaj, W. M. Yang, P. S. Lee, K. J. E. Chua, and S. K. Chou. 2013. Combustion performance and emission characteristics study of pine oil in a diesel engine. Energy 57:344–51. Elsevier.
  • Wander, P. R., C. R. Altafini, A. L. Colombo, and S. C. Perera. 2011. Durability studies of mono-cylinder compression ignition engines operating with diesel, soy and castor oil methyl esters. Energy 36 (6):3917–23. Elsevier.
  • Ye, Z., Q. Meng, H. P. Mohamadian, J. T. Wang, L. Chen, and L. Zhu. 2007. Investigation of deposit formation mechanisms for engine in-cylinder combustion and exhaust systems using quantitative analysis and sustainability study. International Journal of Thermophysics 28 (3):1056–66. doi:10.1007/s10765-007-0228-5.

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