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Research Article

Parametric study of GNPs nano addition in water diesel emulsified fuel on diesel engine at variable injection timings

ORCID Icon, ORCID Icon, , ORCID Icon & ORCID Icon
Pages 7262-7279 | Received 08 Feb 2023, Accepted 26 May 2023, Published online: 05 Jun 2023

References

  • Annamalai, M., B. Dhinesh, K. Nanthagopal, P. Sivarama Krishnan, J. I. Lalvani, M. Parthasarathy, and K. Annamalai. 2016. An assessment on performance, combustion and emission behavior of a diesel engine powered by ceria nanoparticle blended emulsified biofuel. Energy Convers Mgmt 123:372–80. doi:10.1016/j.enconman.2016.06.062.
  • Atarod, P., E. Khlaife, M. Aghbashlo, M. Tabatabaei, A. T. Hoang, H. Mobli, and S. S. Lam, H. Hosseinzadeh-Bandbafha, P. Mohammadi, T. Roodbar Shojaei, O. Mahian. 2021. Soft computing-based modeling and emission control/reduction of a diesel engine fueled with carbon nanoparticle-dosed water/diesel‎ emulsion fuel. Journal of Hazardous Materials 407:124369. doi:10.1016/j.jhazmat.2020.124369.
  • Basha, J. S., and R. B. Anand. 2011. An experimental study in a CI engine using nano additive blended water–diesel emulsion fuel. International Journal of Green Energy 8 (3):332–48. doi:10.1080/15435075.2011.557844.
  • Behera, P., S. Murugan, and G. Nagarajan. 2014. Dual fuel operation of used transformer oil with acetylene in a DI diesel engine. Energy Convers Mgmt 87:840–47. doi:10.1016/j.enconman.2014.07.034.
  • Belagur, V. K., and V. R. Chitimini. 2012. Influence of static injection timing on combustion, emission and performance characteristics of DI diesel engine fuelled with honne oil methyl ester. Int J Ambient Energy 33 (2):65–74. doi:10.1080/01430750.2011.636209.
  • Channapattana, S. V., A. A. Pawar, and P. G. Kamble. 2016. Investigation of DI-CI four-stroke VCR engine at different static injection timings using biofuel derived from non-edible oil source as a fuel. Biofuels 7 (6):661–70. doi:10.1080/17597269.2016.1187540.
  • Dinesha, P., S. Kumar, and M. A. Rosen. 2021. Effects of particle size of cerium oxide nanoparticles on the combustion behavior and exhaust emissions of a diesel engine powered by biodiesel/diesel blend. Biofuel Research Journal 8 (2):1374. doi:10.18331/BRJ2021.8.2.3.
  • El-Seesy, A. I., A. K. Abdel-Rahman, M. Bady, and S. Ookawara. 2017. Performance, combustion, and emission characteristics of a diesel engine fueled by biodiesel-diesel mixtures with multi-walled carbon nanotube additives. Energy Convers Mgmt 135:373–93. doi:10.1016/j.enconman.2016.12.090.
  • Fahd, M. E. A., Y. Wenming, P. S. Lee, S. K. Chou, and C. R. Yap. 2013. Experimental investigations of the performance and emission characteristics of direct injection diesel engine by water emulsion diesel under varying engine load conditions. Appl Energy 102:1042–49. doi:10.1016/j.apenergy.2012.06.041.
  • Ganapathy, T., R. P. Gakkhar, and K. Murugesan. 2011. Influence of injection timing on performance, combustion and emission characteristics of Jatropha biodiesel engine. Appl Energy 88 (12):4376–86. doi:10.1016/j.apenergy.2011.05.016.
  • Ge, J. C., H. Y. Kim, S. K. Yoon, and N. J. Choi. 2020. Optimization of palm oil biodiesel blends and engine operating parameters to improve performance and PM morphology in a common rail direct injection diesel engine. Fuel 260:116326. doi:10.1016/j.fuel.2019.116326.
  • Ge, J. C., G. Wu, and N. J. Choi. 2022. Comparative study of the pilot–main injection timings and diesel/ethanol binary blends on combustion, emission, and microstructure of particles emitted from diesel engines. Fuel 313:122658. doi:10.1016/j.fuel.2021.122658.
  • Ge, J. C., G. Wu, B. O. Yoo, and N. J. Choi. 2022. Effect of injection timing on combustion, emission and particle morphology of an old diesel engine fueled with ternary blends at low idling operations. Energy 253:124150. doi:10.1016/j.energy.2022.124150.
  • Goel, V., N. Kumar, and P. Singh. 2018. Impact of modified parameters on diesel engine characteristics using biodiesel: A review. Renew Sustain Energy Rev 82:2716–29. doi:10.1016/j.rser.2017.09.112.
  • Hasannuddin, A. K., J. Y. Wira, R. Srithar, S. Sarah, M. I. Ahmad, S. A. Aizam, M. A. B. Aiman, M. Zahari, S. Watanabe, M. A. Azrin, et al. 2016. Effect of emulsion fuel on engine emissions–a review. Clean Technologies and Environmental Policy. 18(1):17–32. doi:10.1007/s10098-015-0986-x.
  • Hasannuddin, A. K., W. J. Yahya, S. Sarah, A. M. Ithnin, S. Syahrullail, N. A. C. Sidik, K. A. Abu Kassim, Y. Ahmad, N. Hirofumi, M. A. Ahmad, et al. 2018a. Nano-additives incorporated water in diesel emulsion fuel: fuel properties, performance and emission characteristics assessment. Energy Convers Manage 2018a 169:291–314. doi:10.1016/j.enconman.2018.05.070.
  • Hasannuddin, A. K., W. J. Yahya, S. Sarah, A. M. Ithnin, S. Syahrullail, D. A. Sugeng. 2018b. Performance, emissions and carbon deposit characteristics of diesel engine operating on emulsion fuel. Energy 142:496–506. doi:10.1016/j.energy.2017.10.044.
  • Hosseinzadeh-Bandbafha, H., E. Khalife, M. Tabatabaei, M. Aghbashlo, M. Khanali, P. Mohammadi, T. R. Shojaei, and S. Soltanian. 2019. Effects of aqueous carbon nanoparticles as a novel nanoadditive in water-emulsified diesel/biodiesel blends on performance and emissions parameters of a diesel engine. Energy Convers Mgmt 196:1153–66. doi:10.1016/j.enconman.2019.06.077.
  • Ithnin, A. M., W. J. Yahya, M. A. Ahmad, N. A. Ramlan, H. A. Kadir, N. A. C. Sidik, and T. Koga. 2018. Emulsifier-free water-in-diesel emulsion fuel: Its stability behavior, engine performance, and exhaust emission. Fuel 215:454–62. doi:10.1016/j.fuel.2017.11.061.
  • Jhalani, A., D. Sharma, S. L. Soni, P. K. Sharma, and S. Sharma. 2019. A comprehensive review on water-emulsified diesel fuel: Chemistry, engine performance, and exhaust emissions. Environmental Science and Pollution Research 26 (5):4570–87. doi:10.1007/s11356-018-3958-y.
  • Jiaqiang, E., Z. Zhang, J. Chen, M. H. Pham, X. Zhao, Q. Peng, B. Zhanga, and Z. Yin. 2018. Performance and emission evaluation of a marine diesel engine fueled by water biodiesel-diesel emulsion blends with a fuel additive of a cerium oxide nanoparticle. Energy Convers Mgmt 169:194–205. doi:10.1016/j.enconman.2018.05.073.
  • Jogarao, B., P. Gandhi, and K. C. R. Rao. 2022.Assessment of nano additives in CI engines powered by biodiesel-diesel: A summary of characterization, stability, performance, combustion, emission characteristics, toxicity, and applications. Republic of Moldova Europe: LAP LAMBERT Academic Publishing.
  • Joga Rao, B., V. Srinivas, K. R. Chebattina, and P. Gandhi. 2021. Effect of injection pressure on the performance and emission characteristics of niger-diesel-ethanol blends in CI engine. Journal of Mechanical Engineering 18 (3):77–95. doi:10.24191/jmeche.v18i3.15415.
  • Jogarao, B., and A. Swarna Kumari. 2019. Biodiesel production using second-generation feedstocks: a review. Recent Advances in Material Sciences 693–709. doi:10.1007/978-981-13-7643-6_57.
  • Kannan, G. R., and R. Anand. 2011. Experimental evaluation of DI diesel engine operating with diestrol at varying injection pressure and injection timing. Fuel Processing Technology 92 (12):2252–63. doi:10.1016/j.fuproc.2011.07.015.
  • Khatri, D., and R. Goyal. 2020. Effects of silicon dioxide nanoparticles on the performance and emission features at different injection timings using water diesel emulsified fuel. Energy Conversion & Management 205:112379. doi:10.1016/j.enconman.2019.112379.
  • Khatri, D., R. Goyal, A. Darad, A. Jain, S. Rawat, A. Khan, and A. T. Johnson. 2019. Investigations for the optimal combination of zinc oxide nanoparticle-diesel fuel with optimal compression ratio for improving performance and reducing the emission features of variable compression ratio diesel engine. Clean Technologies and Environmental Policy 21 (7):1485–98. doi:10.1007/s10098-019-01719-8.
  • Kim, H. J., S. H. Park, and C. S. Lee. 2016. Impact of fuel spray angles and injection timing on the combustion and emission characteristics of a high-speed diesel engine. Energy 107:572–79. doi:10.1016/j.energy.2016.04.035.
  • Kumar, N., H. Raheman, and R. Machavaram. 2019. Performance of a diesel engine with water emulsified diesel prepared with optimized process parameters. Int J Green Energy 16 (9):687–701. doi:10.1080/15435075.2019.1618309.
  • Mondal, P. K., and B. K. Mandal. 2019. A comprehensive review on the feasibility of using water emulsified diesel as a CI engine fuel. Fuel 237:937–60. doi:10.1016/j.fuel.2018.10.076.
  • Mustafi, N. N., R. R. Raine, and S. Verhelst. 2013. Combustion and emissions characteristics of a dual fuel engine operated on alternative gaseous fuels. Fuel 109:669–78. doi:10.1016/j.fuel.2013.03.007.
  • Perumal Venkatesan, E., A. Kandhasamy, A. Sivalingam, A. S. Kumar, K. Ramalingam, P. J. T. Joshua, and D. Balasubramanian. 2019. Performance and emission reduction characteristics of cerium oxide nanoparticle-water emulsion biofuel in diesel engine with modified coated piston. Environmental Science & Pollution Research 26 (26):27362–71. doi:10.1007/s11356-019-05773-z.
  • Pullagura, G., J. Bikkavolu, S. Vadapalli, K. R. R. Chebattina, and V. Kuchipudi. 2022a. Comparative study of TiO2 nanoparticles and alcoholic fuel additives-biodiesel-diesel blend for combustion. Performance, and Emission Improvements 40 (5):1249–57. doi:10.18280/ijht.400517.
  • Pullagura, G., J. Bikkavolu, S. Vadapalli, V. V. S. Prasad, and K. R. R. Chebattina. 2023a. The effect of graphene nanoplatelets on physico-chemical properties of sterculia foetida biodiesel-diesel fuel blends. Materials Today: Proceedings. doi:10.1016/j.matpr.2023.01.173.
  • Pullagura, G., S. Vadapalli, V. V. Prasad, J. Bikkavolu, K. R. Chebattina, S. T. Chava, and V. Velisala. 2021. Effect of nano additives on fuel properties, engine performance, emission and combustion characteristics of CI engines fuelled with diesel and biodiesel blends: A comprehensive review. Bulletin Monumental 22 (11):39–51.
  • Pullagura, G., S. Vadapalli, V. V. S. Prasad, V. Velisala, K. R. R. Chebattina, and A. R. Mohammad (2023b). A comprehensive review on nano-additives for the enrichment of diesel and biodiesel blends for engine applications. Recent Advances in Thermal Sciences and Engineering: Select Proceedings of ICAFFTS 2021, 187–206. 10.1007/978-981-19-7214-0_16
  • Pullagura, G., S. Vadapalli, P. VVS, and K. R. Rao Chebattina. 2022b. Effect of dispersant added graphene nanoplatelets with diesel– Sterculia foetida seed oil biodiesel blends on diesel engine: Engine combustion, performance and exhaust emissions. Biofuels 14 (5):1–12. doi:10.1080/17597269.2022.2148876.
  • Qi, D. H., H. Chen, C. F. Lee, L. M. Geng, and Y. Z. Bian. 2010. Experimental studies of a naturally aspirated, Di diesel engine fuelled with ethanol−biodiesel−water microemulsions. Energy Fuels 24 (1):652–63. doi:10.1021/ef900814r.
  • Satyanarayana, M., and C. Muraleedharan. 2011. A comparative study of vegetable oil methyl esters (biodiesels). Energy 36:2129–37. doi:10.1016/j.energy.2010.09.050.
  • Sayin, C., and M. Canakci. 2009. Effects of injection timing on the engine performance and exhaust emissions of a dual-fuel diesel engine. Energy Convers Mgmt 50 (1):203–13. doi:10.1016/j.enconman.2008.06.007.
  • Sharma, A., and S. Murugan. 2015. Combustion, performance and emission characteristics of a DI diesel engine fuelled with non-petroleum fuel: A study on the role of fuel injection timing. J Energy-Instit 88 (4):364–75. doi:10.1016/j.joei.2014.11.006.
  • Song, Y., J. Yu, L. Yu, F. E. Alam, W. Dai, C. Li, and N. Jiang. Dec 25 2015. Enhancing the thermal, electrical, and mechanical properties of silicone rubber by addition of graphene nanoplatelets. Materials & Design 88: 950–57. doi:10.1016/j.matdes.2015.09.064.
  • Srinidhi, P. C., A. Madhusudhan, and S. V. Channapattana. 2019. Effect of NiO nanoparticles on performance and emission characteristics at various injection timings using biodiesel-diesel blends. Fuel 235:185–93. doi:10.1016/j.fuel.2018.07.067.
  • Vellaiyan, S., and K. S. Amirthagadeswaran. 2017. Emission characteristics of water-emulsified diesel fuel at optimized engine operation condition. Pet Sci Technol 35 (13):1355–63. doi:10.1080/10916466.2017.1330348.
  • 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 186:176–89. doi:10.1016/j.fuel.2016.08.046.
  • Yang, W. M., H. An, S. K. Chou, K. J. Chua, B. Mohan, V. Sivasankaralingam, V. Raman, A. Maghbouli, and J. Li. 2013. Impact of emulsion fuel with nano-organic additives on the performance of diesel engine. Appl Energy 112:1206–12. doi:10.1016/j.apenergy.2013.02.027.

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