Kinetics and thermodynamics of geranyl acetate production by direct geraniol acetylation with lyophilized cells of Aspergillus oryzae were studied in n-heptane and compared with those of ethanol acetylation. Batch tests were performed varying the starting substrates equimolar level from 25 to 150 mM, the cell concentration from 5.0 to 30 g/l, and the temperature from 30 to 95°C. The progressive increase in the starting product formation rate observed with increasing temperature up to 80°C and the successive fall beyond this value confirmed the occurrence of reversible biocatalyst inactivation. The simplified Arrhenius model was used to estimate the apparent activation enthalpies of both the acetylation of geraniol and the reversible inactivation of the biocatalyst. The thermodynamic parameters of the irreversible enzyme denaturation were also estimated by residual activity tests performed on lyophilized cells previously exposed in the solvent at different temperatures for variable times. These results on the whole suggest that the reversible inactivation and the irreversible denaturation of mycelium-boundcarboxylesterases are thwarted by increases either in the hydrophobicity or in the molecular weight of the alcoholic substrate.

Simplified kinetics and thermodynamics of geraniol acetylation by lyophilized cells of Aspergillus oryzae / A. Converti, A. Del Borghi, R. Gandolfi, F. Molinari, E. Palazzi, P. Perego, M. Zilli. - In: ENZYME AND MICROBIAL TECHNOLOGY. - ISSN 0141-0229. - 30:2(2002), pp. 216-223.

Simplified kinetics and thermodynamics of geraniol acetylation by lyophilized cells of Aspergillus oryzae

R. Gandolfi;F. Molinari;
2002

Abstract

Kinetics and thermodynamics of geranyl acetate production by direct geraniol acetylation with lyophilized cells of Aspergillus oryzae were studied in n-heptane and compared with those of ethanol acetylation. Batch tests were performed varying the starting substrates equimolar level from 25 to 150 mM, the cell concentration from 5.0 to 30 g/l, and the temperature from 30 to 95°C. The progressive increase in the starting product formation rate observed with increasing temperature up to 80°C and the successive fall beyond this value confirmed the occurrence of reversible biocatalyst inactivation. The simplified Arrhenius model was used to estimate the apparent activation enthalpies of both the acetylation of geraniol and the reversible inactivation of the biocatalyst. The thermodynamic parameters of the irreversible enzyme denaturation were also estimated by residual activity tests performed on lyophilized cells previously exposed in the solvent at different temperatures for variable times. These results on the whole suggest that the reversible inactivation and the irreversible denaturation of mycelium-boundcarboxylesterases are thwarted by increases either in the hydrophobicity or in the molecular weight of the alcoholic substrate.
English
Aspergillus oryzae; Carboxylesterase; Geraniol acetylation; Geranyl acetate; Kinetics; Thermodynamics
Settore CHIM/11 - Chimica e Biotecnologia delle Fermentazioni
Articolo
Sì, ma tipo non specificato
2002
Elsevier Science Inc.
30
2
216
223
Periodico con rilevanza internazionale
info:eu-repo/semantics/article
Simplified kinetics and thermodynamics of geraniol acetylation by lyophilized cells of Aspergillus oryzae / A. Converti, A. Del Borghi, R. Gandolfi, F. Molinari, E. Palazzi, P. Perego, M. Zilli. - In: ENZYME AND MICROBIAL TECHNOLOGY. - ISSN 0141-0229. - 30:2(2002), pp. 216-223.
none
Prodotti della ricerca::01 - Articolo su periodico
7
262
Article (author)
si
A. Converti, A. Del Borghi, R. Gandolfi, F. Molinari, E. Palazzi, P. Perego, M. Zilli
File in questo prodotto:
Non ci sono file associati a questo prodotto.
Pubblicazioni consigliate

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/20304
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 27
  • ???jsp.display-item.citation.isi??? 23
social impact