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Research Article

Ignition analysis on neat alcohols and biodiesel blends propelled research compression ignition engine

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Pages 2911-2922 | Received 22 Mar 2019, Accepted 30 Apr 2019, Published online: 22 May 2019

References

  • Alagu, K., B. Nagappan, and J. Jayaraman., and A. Arul Gnana Dhas, A.. (2018). Impact of antioxidant additives on the performance and emission characteristics of C.I engine fuelled with B20 blend of rice bran biodiesel. Environmental Science and Pollution Research, 25 (18):17634–17644. doi:10.1007/s11356-018-1934-1.
  • Anbarasu, A., and A. Karthikeyan. 2016. Performance and emission characteristics of a diesel engine using cerium oxide nanoparticle blended biodiesel emulsion fuel. Journal of Energy Engineering 142 (1):04015009. doi:10.1061/(asce)ey.1943-7897.0000270.
  • Anbarasu, A., A. Karthikeyan, and M. Balaji. 2015. Performance and emission characteristics of diesel engine using alumina nanoparticle blended biodiesel emulsion fuel. Journal of Energy Resources Technology 138 (2):022203. doi:10.1115/1.4031834.
  • Appavu, P. 2018. Effect of injection timing on performance and emission characteristics of palm biodiesel and diesel blends. Journal of Oil Palm Research. doi:10.21894/jopr.2018.0057.
  • Arulprakasajothi, M., U. Chandrasekhar, D. Yuvarajan, and M. B. Teja. 2018a. An analysis of the implications of air pollutants in Chennai. International Journal of Ambient Energy 1–5. doi:10.1080/01430750.2018.1443504
  • Arulprakasajothi, M. 2018b. Experimental studies of water-based titanium oxide nanofluid in a circular pipe under transition flow with conical strip inserts. Heat Transfer Research 49 (5):439–456. doi:10.1615/heattransres.2018015783.
  • Balan, K. N., U. Yashvanth, P. Booma Devi, T. Arvind, H. Nelson, and Y. Devarajan. 2018. Investigation on emission characteristics of alcohol biodiesel blended diesel engine. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 1–11. doi:10.1080/15567036.2018.1549166.
  • Devarajan, Y. 2016. Analysis on the influence of nanoparticles of alumina, copper oxide, and zirconium oxide on the performance of a flat-plate solar water heater. Energy & Fuels 30 (11):9908–9913. doi:10.1021/acs.energyfuels.6b02264.
  • Devarajan, Y. 2017. Performance and emissions analysis on diesel engine fuelled with cashew nut shell biodiesel and pentanol blends. Korean Journal of Chemical Engineering 34 (4):1021–1026. doi:10.1007/s11814-016-0364-3.
  • Devarajan, Y. 2018. Experimental evaluation of combustion, emission and performance of research diesel engine fuelled Di-methyl- carbonate and biodiesel blends. Atmospheric Pollution Research 10:795-801. doi:10.1016/j.apr.2018.12.007
  • Devarajan, Y., A. Mahalingam, D. B. Munuswamy, and B Nagappan. 2018a. Emission and combustion profile study of unmodified research engine propelled with neat biofuels. Environmental Science and Pollution Research. 25:480-19656. doi:10.1007/s11356-018-2137-5
  • Devarajan, Y., A. Mahalingam, D. B. Munuswamy, and T. Arunkumar. 2018c. Combustion, Performance, and Emission Study of a Research Diesel Engine Fueled with Palm Oil Biodiesel and Its Additive. Energy & Fuels 32:8447-8452. doi:110.1021/acs.energyfuels.8b01125
  • Devarajan, Y., D. B. Munuswamy, B. Nagappan, and A. K. Pandian. 2018b. Performance combustion and emission analysis of mustard oil biodiesel and octanol blends in diesel engine. Heat and Mass Transfer 17. doi:10.1007/s00231-018-2274-x.
  • Devarajan, Y., D. B. Munuswamy, S. Radhakrishnan, A. Mahalingam, and B. Nagappan. 2018d. Experimental Testing and Evaluation of Neat Biodiesel and Heptanol Blends in Diesel Engine. Journal of Testing and Evaluation, 47 (2):987–997. doi:10.1520/JTE20170307
  • Dhinesh, B., R. Niruban Bharathi, J. Isaac Joshua, R. Lalvani, M. Parthasarathy, and K. Annamalai. 2017. An experimental analysis on the influence of fuel borne additives on the single cylinder diesel engine powered by Cymbopogon flexuosus biofuel. Journal of the Energy Institute 90 (4):634–45. doi:10.1016/j.joei.2016.04.010.
  • doi.org/10.1520/JTE20170307Devarajan, Y., and M. Venkata Ramanan. 2016. Investigation on effect of magnetite nanofluid on performance and emission patterns of methyl esters of bio diesel. Journal of environmental engineering and landscape management 24 (2):90–96. doi:10.3846/16486897.2016.1142447
  • Ganesan, S. 2019. Effect of EGR & nanoparticles on performance and emission characteristics of a diesel engine fuelled with palm biodiesel and diesel blends. Journal of Oil Palm Research. doi:10.21894/jopr.2018.0065.
  • Ganesan, S., R. Sivasubramanian, J. B. Sajin, S. Ganesan, and D. Yuvarajan. 2018. Performance and emission study on the effect of oxygenated additive in neat biodiesel fueled diesel engine. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 1–11. doi:10.1080/15567036.2018.1549148.
  • Joy, N., and N. Beemkumar. 2019. Performance evaluation and emission characteristics of biodiesel-ignition enhancer blends propelled in a research diesel engine. International Journal of Green Energy 16 (4):277–83. doi:10.1080/15435075.2018.1561455.
  • Kishore Pandian, A., D. B. Munuswamy, S. Radhakrishana, R. B. Bathey Ramakrishnan, and B. Nagappan. 2017. Influence of an oxygenated additive on emission of an engine fueled with neat biodiesel. Petroleum Science 14 (4):791–97. doi:10.1007/s12182-017-0186-x.
  • Mahalingam, A. 2018. Investigation on the emission reduction technique in acetone-biodiesel aspirated diesel engine. Journal of Oil Palm Research. doi:10.21894/jopr.2018.0020.
  • Pandian, A. K. 2017. Emission analysis on the effect of nanoparticles on neat biodiesel in unmodified diesel engine. Environmental Science and Pollution Research 2429:23273–23278.
  • Pandian, A. K., D. B. Munuswamy, S. Radhakrishanan, R. B. B. Ramakrishnan, and B. Nagappan. 2018. Emission and performance analysis of a diesel engine burning cashew nut shell oil bio diesel mixed with hexanol. Petroleum Science 15:176–84. doi:10.1007/s12182-017-0208-8.
  • Radhakrishnan, S. 2017. Emissions analysis on diesel engine fueled with palm oil biodiesel and pentanol blends. Journal of Oil Palm Research 380–86. doi:10.21894/jopr.2017.2903.11.
  • Radhakrishnan, S., D. B. Munuswamy, and A. Mahalingam. 2018. Performance, emission and combustion study on neat biodiesel and water blends fuelled research diesel engine. Heat and Mass Transfer. doi:10.1007/s00231-018-2509-x.
  • Rajesh Kumar, B., S. Saravanan, D. Rana, V. Anish, and A. Nagendran. 2017. Effect of a sustainable biofuel – n-octanol – on the combustion, performance and emissions of a DI diesel engine under naturally aspirated and exhaust gas recirculation (EGR) modes. Energy Conversion and Management 118:275–286. doi:10.1016/j.enconman.2016.04.001
  • Ramakrishnan, G., P. Krishnan, S. R. T. Rathinam, and Y. Devarajan. 2019. Role of nano-additive blended biodiesel on emission characteristics of the research diesel engine. International Journal of Green Energy 1–7. doi:10.1080/15435075.2019.1577742
  • Rathinam, S., and S. Justin Abraham Baby. 2018. Influence of water on exhaust emissions on unmodified diesel engine propelled with biodiesel. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 40 (1–7):2511–17. doi:10.1080/15567036.2018.1503756.
  • Ravikumar, J., and S. Saravanan. 2016. Performance and emission analysis on blends of diesel, restaurant yellow grease and n-pentanol in direct-injection diesel engine. Environmental Science and Pollution Research 24 (6):5381–90. doi:10.1007/s11356-016-8298-1.
  • Senthilkumar, G., J. B. Sajin, and T. Arunkumar. 2018. Evaluation of emission, performance and combustion characteristics of dual fuelled research diesel engine. Environmental Technology 1–8. doi:10.1080/09593330.2018.1509888.
  • Siva, R., and D. B. Munuswamy. 2018. Emission and performance study emulsified orange peel oil biodiesel in an aspirated research engine. Petroleum Science. doi:10.1007/s12182-018-0288-0.
  • Sivamurugan, P., and Y. Devarajan. 2018. Emission analysis of dual fuelled diesel engine. International Journal of Ambient Energy 1–3. doi:10.1080/01430750.2018.1517696
  • Sudalaimuthu, G., S. Rathinam, D. B. Munuswamy, and A. Thirugnanasambandam. 2018. Testing and evaluation of performance and emissions characteristics of water- biodiesel aspirated research engine. Journal of Testing and Evaluation 48 (5):20180306. doi:10.1520/jte20180306.
  • Vellaiyan, S., A. Subbiah, and P. Chockalingam. 2019. Multi-response optimization to improve the performance and emissions level of a diesel engine fueled with ZnO incorporated water emulsified soybean biodiesel/diesel fuel blends. Fuel 237:1013–1020. doi:10.1016/j.fuel.2018.10.057
  • Vellaiyan, S., A. Subbiah, and P. Chockalingam. 2018a. Combustion, performance, and emission analysis of diesel engine fueled with water-biodiesel emulsion fuel and nanoadditive. Environmental Science and Pollution Research 25 (33):33478–33489. doi:10.1007/s11356-018-3216-3
  • Vellaiyan, S., A. Subbiah, and P. Chockalingam. 2018b. Multi-response optimization to obtain better performance and emission level in a diesel engine fueled with water-biodiesel emulsion fuel and nanoadditive. Environmental Science and Pollution Research 26 (5):4833–4841. doi:10.1007/s11356-018-3979-6
  • Vellaiyan, S., and C. M. A. Partheeban. 2018. Emission analysis of diesel engine fueled with soybean biodiesel and its water blends. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 40 (16):1956–65. doi:10.1080/15567036.2018.1489911.
  • Vellaiyan, S., K. S. Amirthagadeswaran, and S. Vijayakumar. 2017b. Combustion of stable water-in-diesel emulsion fuel and performance assessment. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 39 (5):505–13. doi:10.1080/15567036.2016.1233304.
  • Venkata Ramanan, M., and D. Yuvarajan. 2016. Emission analysis on the influence of magnetite nanofluid on methyl ester in diesel engine. Atmospheric Pollution Research 7 (3):477–481. doi:10.1016/j.apr.2015.12.001
  • Venu, H., and V. Madhavan. 2016. Effect of Al2O3 nanoparticles in biodiesel-diesel-ethanol blends at various injection strategies: Performance, combustion and emission characteristics. Fuel 186:176–189. doi:10.1016/j.fuel.2016.08.046
  • Venu, H. 2016. Effect of nano additives (titanium and zirconium oxides) and diethyl ether on biodiesel-ethanol fuelled ci engine. Journal of Mechanical Science and Technology 30 (5):2361–2368. doi:10.1007/s12206-016-0446-5.
  • Venu, H., and V. Madhavan. 2017. Influence of diethyl ether (DEE) addition in ethanol-biodiesel-diesel (EBD) and methanol-biodiesel-diesel (MBD) blends in a diesel engine. Fuel 189:377–90. doi:10.1016/j.fuel.2016.10.101.
  • Yuvarajan, D. 2016a. Effect of magnetite ferrofluid on the performance and emissions characteristics of diesel engine using methyl esters of mustard oil. Arabian Journal for Science and Engineering 41 (5):2030–2023. doi:10.1007/s13369-016-2060-3.
  • Yuvarajan, D. 2016b. Simultaneous optimization of smoke and noxemissions in a stationary diesel engine fuelled with diesel–oxygenate blends using the grey relational analysis in the taguchi method. Analytical Methods 8 (32):6222–30.
  • Yuvarajan, D., M. Dinesh Babu, N. BeemKumar, and P. Amith Kishore. 2018. Experimental investigation on the influence of titanium dioxide nanofluid on emission pattern of biodiesel in a diesel engine. Atmospheric Pollution Research 9 (1):47–52. doi:10.1016/j.apr.2017.06.003

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