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Research Article

Madhuca Indica (Mahua): A novel feedstock for bio based lubricant application treated with trimethylolpropane and tribological analysis

ORCID Icon, , , &
Pages 339-349 | Received 12 May 2020, Accepted 21 Oct 2020, Published online: 05 Nov 2020

References

  • Abed, K. A., M. S. Gad, A. K. El Morsi, M. M. Sayed, and S. A. Elyazeed. 2019. “Effect of Biodiesel Fuels on Diesel Engine Emissions.” Egyptian Journal of Petroleum 28: 183–188. doi:10.1016/j.ejpe.2019.03.001.
  • Acharya, N., P. Nanda, S. Panda, and S. Acharya. 2017. “A Comparative Study of Stability Characteristics of Mahua and Jatropha Biodiesel and Their Blends.” Journal of King Saud University - Engineering Sciences.
  • Adepoju, T. F. 2020. “Optimization Processes of Biodiesel Production from Pig and Neem (Azadirachta Indica a.Juss) Seeds Blend Oil Using Alternative Catalysts from Waste Biomass.” Industrial Crops and Products 149: 112334. doi:10.1016/j.indcrop.2020.112334.
  • Afifah, A. N., S. Syahrullail, N. I. Wan Azlee, N. A. Che Sidik, W. J. Yahya, and E. Abd Rahim. 2019. “Biolubricant Production from Palm Stearin through Enzymatic Transesterification Method.” Biochemical Engineering Journal 148: 178. doi:10.1016/j.bej.2019.05.009.
  • Agarwal, M., and A. K. N. Shukla. 2020. “Synthesis of Novel Bio-composite by Powder Processing: An Assessment.” Materials and Manufacturing Processes 1. doi:10.1080/10426914.2020.1819543.
  • Akbar, E., Z. Yaakob, S. K. Kamarudin, M. Ismail, and J. Salimon. 2009. “Characteristic and Composition of Jatropha Curcas Oil Seed from Malaysia and Its Potential as Biodiesel Feedstock Feedstock.” European Journal of Scientific Research 29: 396.
  • Ali, M. K. A., H. Xianjun, L. Mai, C. Bicheng, R. F. Turkson, and C. Qingping. 2016. “Reducing Frictional Power Losses and Improving the Scuffing Resistance in Automotive Engines Using Hybrid Nanomaterials as Nano-lubricant Additives.” Wear 364–365: 270.
  • Asnida, M., S. Hisham, N. W. Awang, A. K. Amirruddin, M. M. Noor, K. Kadirgama, D. Ramasamy, et al. 2018. “Copper (II) Oxide Nanoparticles as Additve in Engine Oil to Increase the Durability of Piston-liner Contact”. Fuel 212: 656. doi:10.1016/j.fuel.2017.10.002.
  • Awang, N. W., D. Ramasamy, K. Kadirgama, G. Najafi, and N. A. Che Sidik. 2019. “Study on Friction and Wear of Cellulose Nanocrystal (CNC) Nanoparticle as Lubricating Additive in Engine Oil.” International Journal of Heat and Mass Transfer 131: 1196. doi:10.1016/j.ijheatmasstransfer.2018.11.128.
  • Bhaumik, S., R. Maggirwar, S. Datta, and S. D. Pathak. 2018. “Analyses of Anti-wear and Extreme Pressure Properties of Castor Oil with Zinc Oxide Nano Friction Modifiers.” Applied Surface Science 449: 277. doi:10.1016/j.apsusc.2017.12.131.
  • Cavalcanti, E. D. C., É. C. G. Aguieiras, P. R. da Silva, J. G. Duarte, E. P. Cipolatti, R. Fernandez-Lafuente, J. A. C. da Silva, et al. 2018. “Improved Production of Biolubricants from Soybean Oil and Different Polyols via Esterification Reaction Catalyzed by Immobilized Lipase from Candida Rugosa”. Fuel 215: 705. doi:10.1016/j.fuel.2017.11.119.
  • Do Valle, C. P., J. S. Rodrigues, L. M. U. D. Fechine, A. P. Cunha, M. J. Queiroz, F. M. T. Luna, N. M. P. S. Ricardo, et al. 2018. “Chemical Modification of Tilapia Oil for Biolubricant Applications”. Journal of Cleaner Production 191: 158. doi:10.1016/j.jclepro.2018.04.062.
  • Gemsprim, M. S., N. Babu, and S. Udhayakumar. 2020. “Tribological Evaluation of Vegetable Oil-based Lubricant Blends.” Materials Today: Proceedings.
  • Guzman Borda, F. L., R. D. O. SJ, L. M. Ribeiro de Oliveira, and L. A. J. Kalab. 2018. “Experimental Investigation of the Tribological Behavior of Lubricants with Additive Containing Copper Nanoparticles.” Tribology International 117: 52. doi:10.1016/j.triboint.2017.08.012.
  • De Mello J. D. B., C. Binder, G. Hammes, R. Binder, and A. N. Klein. 2017. “Tribological Behaviour of Sintered Iron Based Self-lubricating Composites.” Friction 5: 285.
  • Mofijur, M., H. H. Masjuki, M. A. Kalam, A. E. Atabani, I. M. R. Fattah, and H. M. Mobarak. 2014. “Comparative Evaluation of Performance and Emission Characteristics of Moringa Oleifera and Palm Oil Based Biodiesel in a Diesel Engine.” Industrial Crops and Products 53: 78. doi:10.1016/j.indcrop.2013.12.011.
  • Sajeeb, A., and P. K. Rajendrakumar. 2019. “Comparative Evaluation of Lubricant Properties of Biodegradable Blend of Coconut and Mustard Oil.” Journal of Cleaner Production 240: 118255. doi:10.1016/j.jclepro.2019.118255.
  • Salimon, J., N. Salih, and E. Yousif. 2011. “Chemically Modified Biolubricant Basestocks from Epoxidized Oleic Acid: Improved Low Temperature Properties and Oxidative Stability.” Journal of Saudi Chemical Society 15: 195. doi:10.1016/j.jscs.2010.08.004.
  • Shahabuddin, M., H. H. Masjuki, M. A. Kalam, M. M. K. Bhuiya, and H. Mehat. 2013. “Comparative Tribological Investigation of Bio-lubricant Formulated from a Non-edible Oil Source (Jatropha Oil).” Industrial Crops and Products 47: 323. doi:10.1016/j.indcrop.2013.03.026.
  • Singh, Y., and E. Abd Rahim. 2020. “Michelia Champaca: Sustainable Novel Non-edible Oil as Nano Based Bio-lubricant with Tribological Investigation.” Fuel 282: 118830. doi:10.1016/j.fuel.2020.118830.
  • Singh, Y., V. Chaudhary, and V. Pal. 2020. “Friction and Wear Characteristics of the Castor Oil with TiO2 as an Additives.” Materials Today: Proceedings26: 2.
  • Singh, Y., A. Farooq, A. Raza, M. A. Mahmood, and S. Jain. 2017. “Sustainability of A Non-edible Vegetable Oil Based Bio-lubricant for Automotive Applications: A Review.” Process Safety and Environmental Protection 111: 701. doi:10.1016/j.psep.2017.08.041.
  • Singh, Y., R. Garg, and S. Kumar. 2017. “Effect of Load on Friction and Wear Characteristics of Jatropha Oil Bio-lubricants.” Biofuels 8: 125. doi:10.1080/17597269.2016.1215065.
  • Singh, Y., R. Garg, and S. Kumar. 2019a. “Friction and Wear Characterization of Modified Jatropha Oil (Jatropha Curcas) Using Pin on Disc Tribometer.” Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 1.
  • Singh, Y., R. Garg, and S. Kumar. 2019b. “Effect of Sliding Speed and Temperature on the Tribological Behavior of Pongamia Oil-based Blended Lubricant.” Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 41: 468. doi:10.1080/15567036.2018.1520330.
  • Singh, Y., N. Kumar Singh, A. Sharma, A. Singla, D. Singh, and E. Abd Rahim. 2021. “Effect of ZnO Nanoparticles Concentration as Additives to the Epoxidized Euphorbia Lathyris Oil and Their Tribological Characterization.” Fuel 285: 119148. doi:10.1016/j.fuel.2020.119148.
  • Singh, Y., P. Singh, A. Sharma, P. Choudhary, A. Singla, and N. K. Singh. 2018a. “Optimization of Wear and Friction Characteristics of Phyllanthus Emblica Seed Oil Based Lubricant Using Response Surface Methodology.” Egyptian Journal of Petroleum 27: 1145–1155. doi:10.1016/j.ejpe.2018.04.001.
  • Singh, Y., A. Singla, A. K. Singh, and A. K. Upadhyay. 2018b. “Tribological Characterization of Pongamia Pinnata Oil Blended Bio-lubricant.” Biofuels 9: 523. doi:10.1080/17597269.2017.1292017.
  • Singh, Y., D. Vyas, N. Kumar, P. M. Rastogi, A. Sharma, and A. Singla. 2018c. “Experimental Evaluation on the Tribological Properties of Cassia Tora Oil by the Addition of Copper Nanoparticles.” International Journal of Ambient Energy 1.
  • Surana, A. R., Y. Singh, V. H. Rajubhai, K. Suthar, and A. Sharma. 2020. “Development of Mahua Oil as a Lubricant Additive and Its Tribological Characteristics.” Materials Today: Proceedings 25: 724.
  • Yashvir Singh, A. S., S. P. Dwivedi, and V. R. Mishra. 2018. “Influence of Sliding Speed on the Tribological Characteristics of Pongamia Oil with Tio2 Nanoparticles.” International Journal of Engineering and Technology 7: 155.
  • Yashvir Singh, A. S., N. Singh, and A. Singla. 2018. “Effect of Alumina Nanoparticles as Additive on the Friction and Wear Behavior of Polanga Based Lubricant.” International Journal of Engineering and Technology 7: 417.

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