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Articles

Esterification optimization of underutilized Ceiba pentandra oil using response surface methodology

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Pages 495-502 | Received 27 Mar 2018, Accepted 29 May 2018, Published online: 19 Jan 2019

References

  • Atabani AE, Mofijur M, Masjuki HH, et al. Effect of Croton megalocarpus, Calophyllum inophyllum, Moringa oleifera, palm and coconut biodiesel-diesel blending on their physico-chemical properties. Ind Crops Prod. 2014;60:130–137.
  • Shahabuddin M, Kalam MA, Masjuki HH, et al. An experimental investigation into biodiesel stability by means of oxidation and property determination. Energy. 2012;44:616–622.
  • Marchetti JM, Errazu AF. Comparison of different heterogeneous catalysts and different alcohols for the esterification reaction of oleic acid. Fuel. 2008;87:3477–3480.
  • Demirbas A. Progress and recent trends in biodiesel fuels. Energy Convers Manag. 2009;50:14–34.
  • Marchetti JM, Miguel VU, Errazu AF. Possible methods for biodiesel production. Renew Sustain Energy Rev. 2007;11:1300–1311.
  • Van Gerpen J. Biodiesel processing and production. Fuel Process Technol. 2005;86:1097–1107.
  • Nongbe MC, Ekou T, Ekou L, et al. Biodiesel production from palm oil using sulfonated graphene catalyst. Renew Energy. 2017;106:135–141.
  • Niju S, Indhumathi J, Begum KMMS, Anantharaman N. Tellina tenuis: a highly active environmentally benign catalyst for the transesterification process. Biofuels. 2016;8:565–570.
  • Eswararao Y, Niju S, Begum KMMS, et al. Transesterification of jatropha oil using a mixture of natural shells as solid catalyst. Biofuels. 2016;7:345–351.
  • Anjana PA, Niju S, Begum KMMS, et al. Studies on biodiesel production from Pongamia oil using heterogeneous catalyst and its effect on diesel engine performance and emission characteristics. Biofuels. 2016;7:377–387.
  • Eswararao Y, Niju S, Begum KMMS, Anantharaman N. Investigation of boiler scale deposits as heterogeneous base catalyst for biodiesel production from jatropha oil. Biofuels. 2017;0:1–6.
  • Silitonga AS, Ong HC, Mahlia TMI, et al. Characterization and production of Ceiba pentandra biodiesel and its blends. Fuel. 2013;108:855–858.
  • Mäkelä M. Experimental design and response surface methodology in energy applications: a tutorial review. Energy Convers Manag. 2017;151:630–640.
  • Ghadge SV, Raheman H. Process optimization for biodiesel production from mahua (Madhuca indica) oil using response surface methodology. Bioresour Technol. 2006;97:379–384.
  • Kumar Tiwari A, Kumar A, Raheman H. Biodiesel production from jatropha oil (Jatropha curcas) with high free fatty acids: an optimized process. Biomass Bioenergy. 2007;31:569–575.
  • Farouk H, Zahraee SM, Atabani AE, et al. Optimization of the esterification process of crude jatropha oil (CJO) containing high levels of free fatty acids: a Malaysian case study. Biofuels. 2017;1–8.
  • Halder S, Dhawane SH, Kumar T, Halder G. Acid-catalyzed esterification of castor (Ricinus communis) oil: optimization through a central composite design approach. Biofuels. 2015;6:191–201.
  • Van TDS, Trung NP, Anh VN, et al. Optimization of esterification of fatty acid rubber seed oil for methyl ester synthesis in a plug flow reactor. Int J Green Energy. 2016;13:720–729.
  • Punsuvon V, Nokkaew R, Somkliang P, et al. The optimization of esterification reaction for biodiesel production from animal fat. Energy Sources, Part A Recover Util Environ Eff. 2015;37:846–853.
  • Roji SSS, Raj RE, Dhanaraj CJ. Multivariant approach to optimize biodiesel extraction from neem oil using two-stage esterification process and its quality assessment. Energy Sources, Part A Recover Util Environ Eff. 2016;38:1975–1981.
  • Ajala EO, Aberuagba F, Olaniyan AM, et al. Optimization of a two stage process for biodiesel production from shea butter using response surface methodology. Egypt J Pet. 2016;26:943–955.
  • Pimngern N, Punsuvon V. Optimization of esterification and transesterification reactions for biodiesel production from crude coconut oil using RSM techniques. Key Eng Mater. 2016;723:610–615.
  • Mueanmas C, Nikhom R, Kaew-On J, Prasertsit K. Statistical optimization for esterification of waste coffee grounds oil using response surface methodology. Energy Procedia. 2017;138:235–240. doi: 10.1016/j.egypro.2017.10.043.
  • Sivakumar P, Sindhanaiselvan S, Gandhi NN, et al. Optimization and kinetic studies on biodiesel production from underutilized Ceiba pentandra oil. Fuel. 2013;103:693–698.
  • 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.
  • Silitonga AS, Ong HC, Mahlia TMI, et al. Biodiesel conversion from high FFA crude Jatropha curcas, Calophyllum inophyllum and Ceiba pentandra oil. Energy Procedia. 2014;61:480–483.
  • Yunus Khan TM, Atabani AE, Badruddin IA, et al. Ceiba pentandra, Nigella sativa and their blend as prospective feedstocks for biodiesel. Ind Crops Prod. 2015;65:367–373.
  • Ong HC, Masjuki HH, Mahlia TMI, et al. Engine performance and emissions using Jatropha curcas, Ceiba pentandra and Calophyllum inophyllum biodiesel in a CI diesel engine. Energy. 2014;69:427–445.
  • Dharma S, Masjuki HH, Ong HC, et al. Optimization of biodiesel production process for mixed Jatropha curcas-Ceiba pentandra biodiesel using response surface methodology. Energy Convers Manag. 2016;115:178–190.
  • Kusumo F, Silitonga AS, Masjuki HH, et al. Optimization of transesterification process for Ceiba pentandra oil: A comparative study between kernel-based extreme learning machine and artificial neural networks. Energy. 2017;134:24–34.
  • Chuah LF, Bokhari A, Yusup S, et al. Optimisation on pretreatment of kapok seed (Ceiba pentandra) oil via esterification reaction in an ultrasonic cavitation reactor. Biomass Convers Biorefinery. 2017;7:91–99.
  • Fadhil AB, Aziz AM, Al-Tamer MH. Biodiesel production from Silybum marianum L. seed oil with high FFA content using sulfonated carbon catalyst for esterification and base catalyst for transesterification. Energy Convers Manag. 2016;108:255–265.
  • Fadhil AB, Ali LH. Alkaline-catalyzed transesterification of Silurus triostegus Heckel fish oil: optimization of transesterification parameters. Renew Energy. 2013;60:481–488.
  • Fadhil AB, Ahmed KM, Dheyab MM. Silybum marianum L. seed oil: a novel feedstock for biodiesel production. Arab J Chem. 2017;10:S683–S690.

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