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Research Article

An investigation of the longevity wear assessment during the utilisation of biofuel-diesel blends in a diesel engine: a case study of crude palm and crude jatropha oil

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Received 10 Oct 2023, Accepted 20 Apr 2024, Published online: 02 May 2024

References

  • IEA. Biofuel production by country/region and fuel type, 2016–2022. Paris: IEA. Available from: https://www.iea.org/data-and-statistics/charts/biofuel-production-by-country-region-and-fuel-type-2016-2022, IEA. Licence: CC BY 4.0.
  • Prasad CMV, Krishna MVSM, Reddy CP, et al. Performance evaluation of non-edible vegetable oils as substitute fuels in low heat rejection diesel engines. Proc Inst Mech Eng Part D J Autom Eng. 2000;214(2):181–187. doi: 10.1177/095440700021400207.
  • Nantha Gopal K, Thundil Karupparaj R. Effect of Pongamia biodiesel on emission and combustion characteristics of di compression ignition engine. Ain Shams Eng J. 2015;6(1):297–305. doi: 10.1016/j.asej.2014.10.001.
  • Nabi MN, Hoque SMN, Akhter MS. Karanja (Pongamia pinnata) biodiesel production in Bangladesh, characterization of karanja biodiesel and its effect on diesel emissions. Fuel Process Technol. 2009;90(9):1080–1086. doi: 10.1016/j.fuproc.2009.04.014.
  • Reddy KV, Babu KR, Ganesan V. Effect of injection pressure on diesel engine performance with vegetable oil: diesel blends. Proceedings of National Conference on IC Engines Combustion; March; New Delhi; 2000. p. 154–159.
  • Karaosmanoglu F, Gurkan Kurt TO. Direct use of sunflower oil as a compression-ignition engine fuel. Energy Sources. 2000;22:659–672. doi: 10.1080/00908310050045618.
  • José JS, Arroyo Y, Sanz-Tejedor MA. Descriptive statistical analysis of vegetable oil combustion in a commercial burner to establish optimal operating conditions. Energies. 2019;12(12):2372. doi: 10.3390/en12122372.
  • Schlick ML, Hanna MA, Schinstock JL. Soybean and sunflower oil performance in a diesel engine. Trans ASAE. 1988;31(5):1345–1349. doi: 10.13031/2013.30868.
  • Bari S, Lim TH, Yu CW. Effects of preheating of crude palm oil (CPO) on injection system, performance and emission of a diesel engine. Renew Energy. 2002;27(3):339–351. doi: 10.1016/S0960-1481(02)00010-1.
  • Sangsawang T, Pipat Pichayentarayotin JT. Experiment study on performance, emissions and heat release rate of IDI diesel engine fuelled by crude palm-diesel. Eng J Chiang Mai Univ. 2009;16:28–38.
  • El-Awad MM, Abas F, Sin MK. Crude palm oil as fuel extender for diesel engines. World Renew Energy Congr. 2000;19–25.
  • Abedin MJ, Masjuki HH, Kalam MA, et al. Performance, emissions, and heat losses of palm and jatropha biodiesel blends in a diesel engine. Ind Crops Prod. 2014;59:96–104. doi: 10.1016/j.indcrop.2014.05.001.
  • Raju NV, Rao GAP, Ramamohan P. Esterified jatropha oil as a fuel in diesel engines. Proceedings of 16th National Conference on IC Engines Combustion; 2000. p. 20–26.
  • , Reksowardojo IK, Lubis IH, Manggala W, et al. Performance and exhaust gas emissions of using biodiesel fuel from physic nut (Jatropha curcas L.) oil on a direct injection diesel engine (DI). SAE Pap. 2007. doi: https://doi.org/10.4271/2007-01-2025
  • Forson FK, Oduro EK, Hammond-Donkoh E. Performance of jatropha oil blends in a diesel engine. Renew Energy. 2004;29(7):1135–1145. doi: 10.1016/j.renene.2003.11.002.
  • Banapurmath NR, Tewari PG, Hosmath RS. Performance and emission characteristics of a DI compression ignition engine operated on honge, jatropha and sesame oil methyl esters. Renew Energy. 2008;33(9):1982–1988. doi: 10.1016/j.renene.2007.11.012.
  • Chauhan BS, Kumar N, Cho HM. Performance and emission studies on an agriculture engine on neat jatropha oil. J Mech Sci Technol. 2010;24(2):529–535. doi: 10.1007/s12206-010-0101-5.
  • Chauhan BS, Kumar N, Cho HM. A study on the performance and emission of a diesel engine fueled with jatropha biodiesel oil and its blends. Energy. 2012;37(1):616–622. doi: 10.1016/j.energy.2011.10.043.
  • Chauhan BS, Kumar N, Cho HM, et al. A study on the performance and emission of a diesel engine fueled with karanja biodiesel and its blends. Energy. 2013;56:1–7. doi: 10.1016/j.energy.2013.03.083.
  • Mamilla VR, Mallikarjun MV, Rao GLN. Effect of combustion chamber design on a di diesel engine fuelled with jatropha methyl esters blends with diesel. Procedia Eng. 2013;64:479–490. doi: 10.1016/j.proeng.2013.09.122.
  • Mofijur M, Masjuki HH, Kalam MA, et al. Evaluation of biodiesel blending, engine performance and emissions characteristics of Jatropha curcas methyl ester: Malaysian perspective. Energy. 2013;55:879–887. doi: 10.1016/j.energy.2013.02.059.
  • Sahoo PK, Das LM, Babu MKG, et al. Comparative evaluation of performance and emission characteristics of jatropha, karanja and polanga based biodiesel as fuel in a tractor engine. Fuel. 2009;88(9):1698–1707. doi: 10.1016/j.fuel.2009.02.015.
  • Senthur NS, Ravikumar TS. Comparative evaluation of performance and emission characteristics of jatropha, pongamia, mahua and eucalyptus oil based biodiesel in diesel engine. Int J Mech Prod Eng Res Dev. 2018;8:845–854. doi: 10.24247/IJMPERDAUG201887.
  • Jindal S, Nandwana BP, Rathore NS. Comparative evaluation of combustion, performance, and emissions of jatropha methyl ester and karanja methyl ester in a direct injection diesel engine. Energy Fuels. 2010;24(3):1565–1572. doi: 10.1021/ef901194z.
  • Sethi K, Sahoo D. Engine performance tests using polanga biodiesel blends. Int J Res Appl Sci Eng Technol. 2023;11(2):668–678. doi: 10.22214/ijraset.2023.49113.
  • Ibrahim SMA, Abed KA, Gad MS, et al. Performance and emissions of a diesel engine burning blends of jatropha and waste cooking oil biodiesel. Proc Inst Mech Eng Part C J Mech Eng Sci. 2023;238(4):1157–1169. doi: 10.1177/09544062231181809.
  • Agarwal D, Agarwal AK. Performance and emissions characteristics of jatropha oil (preheated and blends) in a direct injection compression ignition engine. Appl Therm Eng. 2007;27(13):2314–2323. doi: 10.1016/j.applthermaleng.2007.01.009.
  • Chauhan BS, Kumar N, Du Jun Y, et al. Performance and emission study of preheated jatropha oil on medium capacity diesel engine. Energy. 2010;35(6):2484–2492. doi: 10.1016/j.energy.2010.02.043.
  • Sinha S, Agarwal AK. Experimental investigation of the effect of biodiesel utilization on lubricating oil degradation and wear of a transportation cidi engine. J Eng Gas Turbines Power. 2010;132(4):42801–1–42801–9. doi: 10.1115/1.3077659.
  • Ramaprabhu R, Bhardwaj O, Abraham M. Comparative study of engine oil characteristics in utility vehicles powered by turbo-charged direct injection diesel engines fuelled with biodiesel blend and diesel fuel. SAE. 2008;28:1–17.
  • Kurre SK, Garg R, Pandey S, et al. A review of biofuel generated contamination, engine oil degradation and engine wear a review of biofuel generated contamination, engine oil degradation and engine wear. Biofuels. 2016;8(2):273–280. doi: 10.1080/17597269.2016.1224291.
  • Schumacher LG, Soylu S, Gerpen JV, et al. Fueling direct injected diesel engines with 2% biodiesel blend. Appl Eng Agric. 2005;21:149–152.
  • Choo YM, Ma AN, Basiron Y. Production and evaluation of palm oil methyl esters as diesel substitute; 1996.
  • Hitam AH, Jahis S. Preliminary observations of using palm oil as fuel for cars fitted with elsbett engine. 1995 PORIM International BioFuel Conference; Institut Penyelidikan Minyak Kelapa Sawit Malaysia; 1995. p. 92–96.
  • Tenissara N. Performance study of a direct injection diesel engine using crude palm oil as fuel, [Master thesis]. Suranaree University of Technology]; 2003.
  • Dhar A, Agarwal AK. Experimental investigations of effect of karanja biodiesel on tribological properties of lubricating oil in a compression ignition engine. Fuel. 2014;130:112–119. doi: 10.1016/j.fuel.2014.03.066.
  • Tasneem HRA, Ravikumar KP, Ramakrishna HV. Performance and wear debris characteristics of karanja biodiesel and biolubricant as a substitute in a compression ignition engine. Fuel. 2022;319:123870. doi: 10.1016/j.fuel.2022.123870.
  • Temizer İ, Arı A. Effects on ring wear of bioethanol/diesel fuel blends used at long term endurance tests in a DI engine. Int J Autom Eng Technol. 2022;11:140–151. doi: 10.18245/ijaet.1150240.
  • Pham Huu T, Duc KN, Nguyen The T, et al. An experimental study on wear, deposits, performance, and emissions of bio-fueled motorcycle engines. Energy Sources Part A Recov Util Environ Eff. 2023;45(1):1309–1320. doi: 10.1080/15567036.2023.2178549.
  • Paul S, Debnath D, Doloi S, et al. Fractal mathematics applications for wear image analysis of engines using biofuels. Mater Today Proc. 2022;66:3784–3789. doi: 10.1016/j.matpr.2022.06.108.
  • Sakkampang C, Sakkampang K, Suwunnasopha P, et al. Performance, exhaust emission, and wear behavior of a direct-injection engine using biodiesel from Yang-Na (Dipterocarpus alatus) oleoresins. Case Stud Chem Environ Eng. 2023;7:100328. doi: 10.1016/j.cscee.2023.100328.
  • Poojeera S, Benjapiyaporn C, Intravised K, et al. Performance and emission characteristics of the diesel engine fueled by yang oleoresin blended diesel fuel. Energy Sources Part A Recov Util Environ Eff. 2020:1–18. doi: 10.1080/15567036.2020.1817183.
  • Ovaska T, Niemi S, Katila T, et al. Exhaust particle size distributions of a non-road diesel engine in an endurance test. Agron Res. 2018;16(S1):11591168. 10.15159/AR.18.087
  • Kandasamy SK, Selvaraj AS, Rajagopal TKR. Experimental investigations of ethanol blended biodiesel fuel on automotive diesel engine performance. emission and durability characteristics. Renew Energy. 2019;141:411–419. doi: 10.1016/j.renene.2019.04.039.
  • Ettl J, Bernhardt H, Huber G, et al. Evaluation of pure rapeseed oil as a renewable fuel for agricultural machinery based on emission characteristics and long-term operation behaviour of a fleet of 18 tractors. SN Appl Sci. 2020;2(10):1711. doi: 10.1007/s42452-020-03490-8.
  • Dey S, Reang NM, Das PK, et al. A comprehensive study on prospects of economy, environment, and efficiency of palm oil biodiesel as a renewable fuel. J Clean Prod. 2021;286:124981. doi: 10.1016/j.jclepro.2020.124981.
  • Çelik M. Analysis of the effect of n-heptane and organic based manganese addition to biodiesel on engine performance and emission characteristics. Energy Rep. 2021;7:1672–1696.
  • Oni BA, Oluwatosin D. Emission characteristics and performance of neem seed (Azadirachta indica) and camelina (Camelina sativa) based biodiesel in diesel engine. Renew Energy. 2020;149(April):725–734. doi: 10.1016/j.renene.2019.12.012.
  • Oungpakornkaew P, Karin P, Tongsri R, et al. Characterisation of biodiesel and soot contamination on four-ball wear mechanisms using electron microscopy and confocal laser scanning microscopy. Wear. 2020;458–459:203407. doi: 10.1016/j.wear.2020.203407.
  • Temizer I. The combustion analysis and wear effect of biodiesel fuel used in a diesel engine. Fuel. 2020;270:117571. doi: 10.1016/j.fuel.2020.117571.
  • Al-Rousan AA. Effect of dust and sulfur content on the rate of wear of diesel engines working in the Jordanian desert. Alexandria Eng J. 2006;45:527–536.

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