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Original Article

Effect of alcohol chain length on the optimum conditions for lipase-catalyzed synthesis of adipate esters

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Pages 303-308 | Received 22 Nov 2008, Published online: 07 Oct 2009

References

  • Abdul Rahman MB, Zaidan UH, Basri M, Hussein MZ, Rahman RNZA, Salleh AB. Enzymatic synthesis of methyl adipate ester using lipase from Candida rugosa immobilized on Mg, Zn and Ni of layered double hydroxides (LDHs). J Mol Catal B: Enzym 2008; 50: 33–39
  • Athawale V, Manjrekar N, Athawale M. Lipase-catalyzed synthesis of geranyl methacrylate by transesterification: study of reaction parameters. Tetrahedron Lett 2002; 43: 4797–4800
  • Bezbradica D, Mijin D, Siler-Marinkovic S, Knezevic Z. The Candida rugosa lipase catalyzed synthesis of amyl isobutyrate in organic solvent and solvent-free system: a kinetic study. J Mol Catal B: Enzym 2006; 38: 11–16
  • Du W, Xu Y, Liu D, Zeng J. Comparative study on lipase-catalyzed transformation of soybean oil for biodiesel production with different acyl acceptors. J Mol Catal B: Enzym 2004; 30: 125–129
  • Garcia-Alles LF, Gotor V. Alcohol inhibition and specificity studies of lipase B from Candida antarctica in organic solvents. Biotechnol Bioeng 1998; 59: 163–170
  • Ghamgui H, Karra-Chaabouni M, Gargouri Y. 1-Butyl oleate synthesis by immobilized lipase from Rhizopus oryzae: a comparative study between n-hexane and solvent-free system. Enzyme Microb Techniol 2004; 35: 355–363
  • Gryglewicz S. Enzyme catalyzed synthesis of some adipic esters. J Mol Catal B: Enzym 2001; 15: 9–13
  • Gunawan ER, Basri M, Abdul Rahman MB, Salleh AB, Rahman RNZA. Study on response surface methodology of lipase-catalyzed synthesis of palm-based wax ester. Enzyme Microb Technol 2005; 37: 739–744
  • Keng PS, Basri M, Abdul Rahman MB, Salleh AB, Rahman RNZA, Ariff A. Optimization of palm based wax esters production using statistical experimental designs. J Oleo Sci 2005; 54: 519–528
  • Lai DT, O'Connor CJ. Studies on synthesis of short chain alkyl esters catalyzed by goat pregastric lipase. J Mol Catal B: Enzym 1999; 6: 411–420
  • Macedo GA, Pastore GM, Rodrigues MI. Optimising the synthesis of isoamyl butyrate using Rhizopus sp. lipase with a central composite rotatable design. Process Biochem 2004; 39: 687–692
  • McCabe RW, Taylor A. An investigation of the acyl-binding site of Candida antarctica lipase B. Enzyme Microb Technol 2004; 35: 393–398
  • Otto RT, Scheib H, Bornscheuer UT, Pleiss J, Syldatk C, Schmid RD. Substrate specificity of lipase B from Candida antarctica in the synthesis of arylaliphatic glycolipids. J Mol Catal B: Enzym 2000; 8: 201–211
  • Park EY, Sato M, Kojima S. Fatty acid methyl ester production using lipase- immobilizing silica particles with different particle sizes and different specific surface areas. Enzyme Microb Technol 2006; 39: 889–896
  • Petersson AEV, Gustafsson LM, Nordblad M, Borjesson P, Mattiasson B, Adlercreutz P. Wax esters produced by solvent-free energy-efficient enzymatic synthesis and their applicability as wood coatings. Green Chem 2005; 7: 837–843
  • Ramamurthi S, McCurdy AR. Lipase-catalyzed esterification of oleic acid and methanol in hexane: a kinetic study. J Am Oil Chem Soc 1994; 71: 927–930
  • Saisubramanian N, Edwinoliver NG, Nandakumar N, Kamini NR, Puvanakrishnan R. Efficacy of lipase from Aspergillus niger as an additive in detergent formulations: a statistical approach. J Ind Microbiol Biotechnol 2006; 33: 669–676
  • Vaysse L, Ly A, Moulin G, Dubreucq E. Chain-length selectivity of various lipases during hydrolysis, esterification and alcoholysis in biphasic aqueous medium. Enzyme Microb Technol 2002; 31: 648–655
  • Zaidan UH. Synthesis of adipate ester using Candida rugosa lipase immobilized on layered double hydroxide (LDH) [thesis]. Universiti Putra Malaysia; 170 p, Malaysia 2007
  • Zaidi A, Gainer JL, Carta G, Mrani A, Kadiri T, Belarbi Y, Mir A. Esterification of fatty acids using nylon-immobilized lipase in n-hexane: kinetic parameters and chain-length effects. J Biotechnol 2002; 93: 209–216

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