脂肪酶
化学
生物柴油生产
生物柴油
润滑油
生物降解
酯交换
甲醇
甘油三酯酶
工业与生产工程
色谱法
Plackett–伯曼设计
有机化学
乙醇
溶剂
食品科学
酶
响应面法
催化作用
电气工程
工程类
作者
Fatma Rmili,Bilel Hadrich,Mohamed Chamkha,Adel Sayari,Ahmed Fendri
标识
DOI:10.1080/10826068.2021.1920034
摘要
Using the statistical approach, this work seeks to optimize the process parameters to boost the generation of an organic solvent-tolerant lipase by Staphylococcus capitis SH6. The main parameters influencing the enzyme production were identified by using Plackett-Burman's screening design. Among the test variables, only tryptone (25 g/L), malt extract (2.5 g/L), NaCl (10 g/L) and pH (7.0) contributed positively to enzyme production. Then, the crude lipase was immobilized by adsorption on CaCO3 at pH 10. A maximum immobilization efficiency of 82% was obtained by incubating 280 mg of enzyme with CaCO3 (1 g) during 30 min. The immobilized lipase was more stable toward organic solvents than the free enzyme. It retained about 90% of its original activity in the presence of ethanol and methanol. After that, the immobilized enzyme was used for biodiesel production by transesterification process between waste oil and methanol or ethanol during 24 h at 30 °C. Our results show that the lipase can be utilized efficiently in biodiesel industry. Likewise, we have demonstrated that the immobilized enzyme may be implicated in the biodegradability of waste grease; the maximum conversion yield into fatty acids obtained after 12 h at 30 °C, was 57%.
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