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Biotechnol Lett ; 43(2): 503-509, 2021 Feb.
Article in English | MEDLINE | ID: mdl-33051809

ABSTRACT

OBJECTIVE: Lipases are often used in immobilized form, but commercial immobilized lipases are costly. An alternative is to produce lipases in solid-state fermentation, dry the solids and then use the "dry fermented solids" (DFS) directly. We produced DFS by growing Burkholderia contaminans on a mixture of sugarcane bagasse and sunflower seed meal and used the DFS to esterify oleic acid with ethanol in subcritical and supercritical CO2 at 40 °C. RESULTS: Compared to a control without CO2 at atmospheric pressure, subcritical CO2 at 30 bar improved esterification activity 1.2-fold. Higher pressures, including supercritical pressures up to 150 bar, reduced activity to less than 80% of the control. At 30 bar, the esterification activity was improved a further 1.8-fold with the addition of 9% water (i.e. 9 g water per 100 g oleic acid) to the reaction medium. CONCLUSION: A subcritical CO2 atmosphere, with the addition of a small amount of water, improved the esterification activity of DFS containing lipases of Burkholderia contaminans.


Subject(s)
Carbon Dioxide/chemistry , Esterification/genetics , Fermentation/genetics , Lipase/chemistry , Biofuels , Burkholderia/chemistry , Burkholderia/enzymology , Cellulose/chemistry , Ethanol/chemistry , Oleic Acid/chemistry , Pressure , Water/chemistry
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