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Articles

Effect of dispersant added graphene nanoplatelets with diesel–Sterculia foetida seed oil biodiesel blends on diesel engine: engine combustion, performance and exhaust emissions

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Pages 461-472 | Received 30 Jun 2022, Accepted 12 Nov 2022, Published online: 13 Dec 2022

References

  • Hasan MM, Rahman MM. Performance and emission characteristics of biodiesel-diesel blend and environmental and economic impacts of biodiesel production: a review. Renew Sustain Energy Rev. 2017;74:938–948.
  • Agarwal AK. Biofuels (alcohols and biodiesel) applications as fuels for internal combustion engines. Prog Energy Combust Sci. 2007;33(3):233–271.
  • Aghbashlo M, Demirbas A. Biodiesel: hopes and dreads. BRJ. 2016;3(2):379–379.
  • Jiaqiang E, Pham M, Zhao D, et al. Effect of different technologies on combustion and emissions of the diesel engine fueled with biodiesel: a review. Renew Sustain Energy Rev. 2017;80:620–647.
  • Hoseini SS, Najafi G, Ghobadian B, et al. The effect of combustion management on diesel engine emissions fueled with biodiesel-diesel blends. Renew Sustain Energy Rev. 2017;73:307–331.
  • Atabani AE, Silitonga AS, Anjum I, et al. A comprehensive review on biodiesel as an alternative energy resource and its characteristics. Renew Sustain Energy Rev. 2012;16(4):2070–2093.
  • Lai JYW, Lin KC, Violi A. Biodiesel combustion: advances in chemical kinetic modeling. Prog Energy Combust Sci. 2011;37(1):1–14.
  • Atabani AE, Cesar S. Calophyllum inophyllum L. A prospective non-edible biodiesel feedstock. Study of biodiesel production, properties, fatty acidcomposition, blending and engine performance. Renew Sustain Energy Rev. 2014;37:644–655.
  • Tabatabaei M, Karimi K, Sarvari Horvath I, et al. Recent trends in biodiesel production. Biofuel Res J. 2015;2(3):258–267.
  • Tamilselvan P, Nallusamy N, Rajkumar S. A comprehensive review on performance, combustion and emission characteristics of biodiesel fuelled diesel engines. Renew Sustain Energy Rev. 2017;79:1134–1159.
  • Jogarao B, Swarna Kumari A. Biodiesel production using second-generation feedstocks: a review. Adv Mater Sci. 2019:693–709.
  • Joga Rao B, Srinivas V, Chebattina KR, et al. Effect of injection pressure on the performance and emission characteristics of niger-dieselethanol blends in CI engine. J Mech Eng. 2021;18(3):77–95.
  • Silitonga AS, Ong HC, Masjuki HH, et al. Production of biodiesel from Sterculia foetida and its process optimization. Fuel. 2013;111:478–484.
  • Saxena V, Kumar N, Saxena VK. A comprehensive review on combustion and stability aspects of metal nanoparticles and its additive effect on diesel and biodiesel fuelled C.I. engine. Renew Sustain Energy Rev. 2017;70:563–588.
  • Khalife E, Tabatabaei M, Demirbas A, et al. Impacts of additives on performance and emission characteristics of diesel engines during steady state operation. Prog Energy Combust Sci. 2017;59:32–78.
  • Basha SA, Gopal KR. A review of the effects of catalyst and additive on biodiesel production, performance, combustion and emission characteristics. Renew Sustain Energy Rev. 2012;16(1):711–717.
  • Soudagar MEM, Nik-Ghazali NN, Kalam MA, et al. The effects of graphene oxide nanoparticle additive stably dispersed in dairy scum oil biodiesel-diesel fuel blend on CI engine: performance, emission and combustion characteristics. Fuel. 2019;257:116015.
  • Razzaq L, Mujtaba MA, Soudagar MEM, et al. Engine performance and emission characteristics of palm biodiesel blends with graphene oxide nanoplatelets and dimethyl carbonate additives. J Environ Manage. 2021;282:111917.
  • EL-Seesy AI, Hassan H, Ookawara SJEC. Performance, combustion, and emission characteristics of a diesel engine fueled with Jatropha methyl ester and graphene oxide additives. Energy Convers Manage. 2018;166:674–686.
  • El-Seesy AI, Hassan H. Investigation of the effect of adding graphene oxide, graphene nanoplatelet, and multiwalled carbon nanotube additives with n-butanol-Jatropha methyl ester on a diesel engine performance. Renewable Energy. 2019;132:558–574.
  • Ooi JB, Ismail HM, Tan BT, et al. Effects of graphite oxide and single-walled carbon nanotubes as diesel additives on the performance, combustion, and emission characteristics of a light-duty diesel engine. Energy. 2018;161:70–80.
  • Sadhik Basha J, Anand RB. Performance, emission and combustion characteristics of a diesel engine using carbon nanotubes blended Jatropha methyl ester emulsions. Alexandria Eng J. 2014;53(2):259–273.
  • El-Seesy AI, Abdel-Rahman AK, Bady M, et al. Performance, combustion, and emission characteristics of a diesel engine fueled by biodiesel-diesel mixtures with multi-walled carbon nanotubes additives. Energy Convers Manag. 2017;135:373–393.
  • Akhtar MT, Ahmad M, Shaheen A, et al. Waseem a comparative study of liquid biodiesel from Sterculia foetida (bottle tree) using CuO-CeO2 and Fe2O3 nano catalysts. Front Energy Res. 2019;7:4.
  • Kavitha MS, Murugavelh S. Optimization and transesterification of sterculia oil: assessment of engine performance, emission and combustion analysis. J Clean Prod. 2019;234:1192–1209.
  • Ong HC, Silitonga AS, Masjuki HH, et al. Production and comparative fuel properties of biodiesel from non-edible oils: Jatropha curcas, Sterculia foetida and Ceiba pentandra. Energy Convers Manag. 2013;73:245–255.
  • Bhanu Teja N, Mohamed Abdul Hafeez M, Surendran G, et al. Investigations of performance and emission characteristics in diesel engine fueled with Hemp oil methyl ester. Mater Today Proc. 2020. DOI: 10.1016/j.matpr.2020.11.110
  • Bello YH, Ookawara SA, Ahmed MA, et al. Investigating the engine performance, emissions and soot characteristics of CI engine fueled with diesel fuel loaded with graphene oxide-titanium dioxide nanocomposites. Fuel. 2020;269:117436.
  • Hoseini S, Najafi G, Ghobadian B, et al. Novel environmentally friendly fuel: the effects of nanographene oxide additives on the performance and emission characteristics of diesel engines fuelled with Ailanthus altissima biodiesel. Renew Energy. 2018;125:283–294.
  • Chacko N, Jeyaseelan T. Comparative evaluation of graphene oxide and graphene nanoplatelets as fuel additives on the combustion and emission characteristics of a diesel engine fuelled with diesel and biodiesel blend. Fuel Process Technol. 2020;204:106406.
  • Song Y, Yu J, Yu L, et al. Enhancing the thermal, electrical, and mechanical properties of silicone rubber by addition of graphene nanoplatelets. Mater Des. 2015;88:950–957.
  • Soudagar MEM, Nik-Ghazali N, Abul Kalam M, et al. The effect of nano-additives in diesel-biodiesel fuel blends: a comprehensive review on stability, engine performance and emission characteristics. Energy Convers Manage. 2018;178:146–177.
  • Aalam CS, Saravanan CG. Effects of nano metal oxide blended Mahua biodiesel on CRDI diesel engine. Ain Shams Eng J. 2017;8(4):689–696.
  • Hoseini SS, Najafi G, Ghobadian B, et al. Performance and emission characteristics of a CI engine using graphene oxide (GO) nano-particles additives in biodiesel-diesel blends. Renew Energy. 2020;145:458–465.
  • Fahd MEA, Wenming Y, Lee PS, et al. Experimental investigation of the performance and emission characteristics of direct injection diesel engine by water emulsion diesel under varying engine load condition. Appl Energy. 2013;102:1042–1049.
  • Sarıdemir S, Ağbulut Ü. Combustion, performance, vibration and noise characteristics of cottonseed methyl ester–diesel blends fuelled engine. Biofuels. 2022;13(2):201–210.
  • Emiroğlu AO, Keskin A, Şen M. Experimental investigation of the effects of turkey rendering fat biodiesel on combustion, performance and exhaust emissions of a diesel engine. Fuel. 2018;216:266–273.
  • Gad MS, Kamel BM, Badruddin IA. Improving the diesel engine performance, emissions and combustion characteristics using biodiesel with carbon nanomaterials. Fuel. 2021;288:119665.
  • Soudagar MEM, Nik-Ghazali N-N, Kalam MA, et al. An investigation on the influence of aluminium oxide nano-additive and honge oil methyl ester on engine performance, combustion and emission characteristics. Renew Energy. 2020;146:2291–2307.
  • Nair J, Prasad Kumar P, Thakur AK, et al. 2021. Influence on emissions and performance of CI engine with graphene nanoparticles blended with Karanja biodiesel. AIP Conf Proc. 2317(1):020017.
  • El-Seesy AI, Hassan H, Ookawara S. Effects of graphene nanoplatelet addition to jatropha biodiesel–diesel mixture on the performance and emission characteristics of a diesel engine. Energy. 2018;147:1129–1152.
  • Khan TMY. Direct transesterification for biodiesel production and testing the engine for performance and emissions run on biodiesel-diesel-nano blends. Nanomaterials. 2021;11(2):417.
  • Aalam CS, Saravanan C, Kannan M. Experimental investigations on a CRDI system assisted diesel engine fuelled with aluminium oxide nanoparticles blended biodiesel. Alexandria Eng J. 2015;54(3):351–358.
  • Mahbubul I, Saidur R, Amalina M. Latest developments on the viscosity of nanofluids. Int J Heat Mass Transfer. 2012;55(4):874–885.
  • Elkelawy M, El Shenawy EA, Bastawissi HAE, et al. A comprehensive review on the effects of diesel/biofuel blends with nanofluid additives on compression ignition engine by response surface methodology. Energy Convers Manage. 2022;X:100177.
  • Ahmed A, Shah AN, Azam A, et al. Environment-friendly novel fuel additives: investigation of the effects of graphite nanoparticles on performance and regulated gaseous emissions of CI engine. Energy Convers Manage. 2020;211:112748.
  • Arumugam G, Muralidharan K. Influence of biodegradable graphene oxide nano-platelets blended with Indian Geranium grass biodiesel in a diesel engine. Int J Environ Sci Technol. 2022;19(9):8613–8632.

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