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Biodiesel production from phoenix tree seed oil catalyzed by liquid lipozyme TL100L

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  • Sun, Shangde
  • Li, Kaiyue

Abstract

Biodiesel is a green and sustainable energy, which is a fatty acid alkyl ester as an alternative to petroleum diesel. In the work, phoenix tree seed oil, one kind of undeveloped woody plant resource, was used as the novel raw material for biodiesel preparation. Several free liquid lipases were used as biocatalysts to catalyze the transesterification of phoenix tree seed oil (PTSO) with methanol. Effects of transesterification variables (enzyme load, substrate ratio, transesterification time and temperature) on biodiesel preparation were evaluated and optimized using RSM. Results showed that PTSO was a good alternative for biodiesel preparation. Among these tested free liquid lipases, lipozyme TL100L from Thermomyces laguginosus showed the best performance for the transesterification. Transesterification variables were optimized and the maximum biodiesel yield (98.8 ± 1.1%) was achieved under the optimal conditions (enzyme load 10%, transesterification temperature 30 °C, substrate ratio (PTSO to methanol) 1:5 (mol/mol) and reaction time 6.98 h). The activation energy of biodiesel formation was 21.3 kJ/mol. Kinetic parameters K’m and Vmax were 2.55 × 10−1 mol/L and 6.9 × 10−3 mol/(L·min), respectively.

Suggested Citation

  • Sun, Shangde & Li, Kaiyue, 2020. "Biodiesel production from phoenix tree seed oil catalyzed by liquid lipozyme TL100L," Renewable Energy, Elsevier, vol. 151(C), pages 152-160.
  • Handle: RePEc:eee:renene:v:151:y:2020:i:c:p:152-160
    DOI: 10.1016/j.renene.2019.11.006
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    1. Arumugam, A. & Ponnusami, V., 2019. "Biodiesel production from Calophyllum inophyllum oil a potential non-edible feedstock: An overview," Renewable Energy, Elsevier, vol. 131(C), pages 459-471.
    2. Gog, Adriana & Roman, Marius & Toşa, Monica & Paizs, Csaba & Irimie, Florin Dan, 2012. "Biodiesel production using enzymatic transesterification – Current state and perspectives," Renewable Energy, Elsevier, vol. 39(1), pages 10-16.
    3. Maleki, Esmat & Aroua, Mohamed Kheireddine & Sulaiman, Nik Meriam Nik, 2013. "Improved yield of solvent free enzymatic methanolysis of palm and jatropha oils blended with castor oil," Applied Energy, Elsevier, vol. 104(C), pages 905-909.
    4. Ahmad, Tanweer & Danish, Mohammed & Kale, Pradeep & Geremew, Belete & Adeloju, Samuel B. & Nizami, Maniruddin & Ayoub, Muhammad, 2019. "Optimization of process variables for biodiesel production by transesterification of flaxseed oil and produced biodiesel characterizations," Renewable Energy, Elsevier, vol. 139(C), pages 1272-1280.
    5. Matinja, Adamu Idris & Mohd Zain, Nor Azimah & Suhaimi, Mohd Suardi & Alhassan, Adamu Jibril, 2019. "Optimization of biodiesel production from palm oil mill effluent using lipase immobilized in PVA-alginate-sulfate beads," Renewable Energy, Elsevier, vol. 135(C), pages 1178-1185.
    6. Talebian-Kiakalaieh, Amin & Amin, Nor Aishah Saidina & Mazaheri, Hossein, 2013. "A review on novel processes of biodiesel production from waste cooking oil," Applied Energy, Elsevier, vol. 104(C), pages 683-710.
    7. Issariyakul, Titipong & Dalai, Ajay K., 2014. "Biodiesel from vegetable oils," Renewable and Sustainable Energy Reviews, Elsevier, vol. 31(C), pages 446-471.
    8. Su, Feng & Peng, Cheng & Li, Guan-Lin & Xu, Li & Yan, Yun-Jun, 2016. "Biodiesel production from woody oil catalyzed by Candida rugosa lipase in ionic liquid," Renewable Energy, Elsevier, vol. 90(C), pages 329-335.
    9. Zhao, Kang & Cao, Xi & Di, Qinjian & Wang, Meng & Cao, Hao & Deng, Li & Liu, Junfeng & Wang, Fang & Tan, Tianwei, 2017. "Synthesis, characterization and optimization of a two-step immobilized lipase," Renewable Energy, Elsevier, vol. 103(C), pages 383-387.
    10. Esonye, Chizoo & Onukwuli, Okechukwu Dominic & Ofoefule, Akuzuo Uwaoma, 2019. "Optimization of methyl ester production from Prunus Amygdalus seed oil using response surface methodology and Artificial Neural Networks," Renewable Energy, Elsevier, vol. 130(C), pages 61-72.
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    1. Monteiro, Rodolpho R.C. & Arana-Peña, Sara & da Rocha, Thays N. & Miranda, Letícia P. & Berenguer-Murcia, Ángel & Tardioli, Paulo W. & dos Santos, José C.S. & Fernandez-Lafuente, Roberto, 2021. "Liquid lipase preparations designed for industrial production of biodiesel. Is it really an optimal solution?," Renewable Energy, Elsevier, vol. 164(C), pages 1566-1587.
    2. Wancura, João H.C. & Brondani, Michel & dos Santos, Maicon S.N. & Oro, Carolina E.D. & Wancura, Guilherme C. & Tres, Marcus V. & Oliveira, J. Vladimir, 2023. "Demystifying the enzymatic biodiesel: How lipases are contributing to its technological advances," Renewable Energy, Elsevier, vol. 216(C).

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