[1] Saeed, A. and Iqbal, M. (2013). “Loofa (Luffa cylindrica) Sponge: Review of Development of the Biomatrix as a Tool for Biotechnological Applications”. Biotechnol. Prog, Vol. 29, No. 3, pp. 573-600.
[2] Saw, S.K., Purwar, R., Nandy, S., Ghose, J. and Sarkhel, G. (2013). “Fabrication, Characterization, and Evaluation of Luffa cylindrica Fiber Reinforced Epoxy Composites”. Bioresources, Vol. 8, No. 4, pp. 4805-4826.
[3] Mukherjea, R.N., Bhattacharya, P., Gangopadhyay, T. and Ghosh, B.K. (1980). “Effect of External Mass Transfer on Activation Energy of Hydrolysis of BAEE and Casein by Trypsin Immobilized on Molecular Sieve Type 4A”. Biotechnology and Bioengineering, Vol. XXII, pp. 543-553.
[4] Davis, M.E. and Davis, R.J. (2003). “Fundamentals of chemical reaction engineering”, first edition, McGraw-Hill Higher.
[5] Bailey, J.E. and Ollis, D.F. (1986). “Biochemical Engineering Fundamentals”. Second Edition, McGraw Hill Higher, New York.
[6] Ban, K., Kaieda, M., Matsumoto, T., Kondo, A. and Fukuda, H. (2001). “Whole cell biocatalyst for biodiesel fuel production utilizing Rhizopus oryzae cells immobilized within biomass support particles”. Biochemical Engineering Journal, Vol. 8, pp. 39-43.
[7] Sattari, S., Vahabzadeh F. and Aghtaei, H.K. (2015). “Performance of loofa-immobilized Rhizopus oryzae in the enzymatic production of biodiesel with use of oleic acid in n-hexane medium”. Brazilian Journal of Chemical Engineering, Vol. 32, No. 02, pp. 367-376.
[8] Lowry, R.R. and Tinsley, I.J. (1976). “Rapid colorimetric determination of free fatty acids”. J. Am. Oil Chem. Soc., Vol. 53, pp. 470-472.
[9] Fogler, H. S. (2006). “Elements of Chemical Reaction Engineering”. Fourth Edition, Pearson Education, Inc.
[10] Hiol, A., Jonzo, M. D., Rugani, N., Druet, D., Sarda, L. and Comeau, L. C. (2000). “Purification and characterization of an extracellular lipase from a thermophilic Rhizopus oryzae strain isolated from palm fruit”. Enzyme and Microbial Technology, Vol. 26, pp. 421-430.
[11] Ben Salah, R., Ghamghui, H., Miled, N., Mejdoub, H. and Gargouri, Y. (2007). “Production of butyl acetate ester by lipase from novel strain of Rhizopus oryzae”. Journal of Bioscience and Bioengine, Vol. 103, No. 4, pp. 368-372.
[12] Basri, M., Kassim, M.A., Mohamad, R. and Ariff, A.B. (2013). “Optimization and kinetic study on the synthesis of palm oil ester using Lipozyme TL IM”. Journal of Molecular Catalysis B: Enzymatic, Vol. 85-86, pp. 214-219.
[13] Hajar, M. and Vahabzadeh, F. (2016). “Production of a biodiesel additive in a stirred basket reactor using immobilized lipase: Kinetic and mass transfer analysis”, Korean J. Chem. Eng., DOI: 10.1007/s11814-015-0249-x.
[14] Yu, X.W. and Li, Y.Q. (2006). “Kinetics and thermodynamics of synthesis of propyl gallate by mycelium-bound tannase from Aspergillus niger in organic solvent”. Journal of Molecular Catalysis B: Enzymatic, Vol. 40, pp. 44-50.
[15] Royon, D., Daz, M., Ellenrieder, G. and Locatelli, S. (2007). “Enzymatic production of biodiesel from cotton seed oil using t-butanol as a solvent”. Bioresource Technology, Vol. 98, pp. 648-653.