Lee_2010_Appl.Biochem.Biotechnol_161_365

Reference

Title : Development of batch and continuous processes on biodiesel production in a packed-bed reactor by a mixture of immobilized Candida rugosa and Rhizopus oryzae lipases - Lee_2010_Appl.Biochem.Biotechnol_161_365
Author(s) : Lee JH , Kim SB , Park C , Tae B , Han SO , Kim SW
Ref : Appl Biochem Biotechnol , 161 :365 , 2010
Abstract :

In this study, transesterification and esterification were investigated in batch and continuous process using immobilized Candida rugosa and Rhizopus oryzae lipases. In the case of batch process, stepwise reaction method was investigated to prevent the lipase deactivation. Reaction conditions were as follows: temperature, 45 degrees C; agitation speed, 250 rpm; enzyme concentration, 20%; and water contents 10%. And then, conversion yield was 98.33% at 4 h. In the case of continuous process, circulation and long-term continuous system were investigated for development of efficient mass transfer system. Optimal reaction conditions were as follows: temperature, 45 degrees C; flow rate, 0.8 mL/min; and water contents, 10%. And then, conversion yield of biodiesel was 97.98% at 3 h. Especially, the maximum conversion yield using a mixture of immobilized lipases exceeded over 90% for 108 h in long-term continuous system under optimal reaction conditions (45 degrees C; flow rate, 0.8 mL/min; and water contents, 10%). These results should help in determining the best method for the biodiesel production and improving the design and operation of large scale by enzymatic systems.

PubMedSearch : Lee_2010_Appl.Biochem.Biotechnol_161_365
PubMedID: 19898962

Related information

Citations formats

Lee JH, Kim SB, Park C, Tae B, Han SO, Kim SW (2010)
Development of batch and continuous processes on biodiesel production in a packed-bed reactor by a mixture of immobilized Candida rugosa and Rhizopus oryzae lipases
Appl Biochem Biotechnol 161 :365

Lee JH, Kim SB, Park C, Tae B, Han SO, Kim SW (2010)
Appl Biochem Biotechnol 161 :365