The Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, Wuxi, 214122, People's Republic of China.
Bioprocess Biosyst Eng. 2023 Aug;46(8):1195-1208. doi: 10.1007/s00449-023-02891-4. Epub 2023 Jun 17.
Acidified oil is obtained from by-product of crops oil refining industry, which is considered as a low-cost material for fatty acid production. Hydrolysis of acidified oil by lipase catalysis for producing fatty acid is a sustainable and efficient bioprocess that is an alternative of continuous countercurrent hydrolysis. In this study, lipase from Candida rugosa (CRL) was immobilized on magnetic FeO@SiO via covalent binding strategy for highly efficient hydrolysis of acidified soybean oil. FTIR, XRD, SEM and VSM were used to characterize the immobilized lipase (FeO@SiO-CRL). The enzyme properties of the FeO@SiO-CRL were determined. FeO@SiO-CRL was used to catalyze the hydrolysis of acidified soybean oil to produce fatty acids. Catalytic reaction conditions were studied, including amount of catalyst, reaction time, and water/oil ratio. The results of optimization indicated that the hydrolysis rate reached 98% under 10 wt.% (oil) of catalyst, 3:1 (v/v) of water/oil ratio, and 313 K after 12 h. After 5 cycles, the hydrolysis activity of FeO@SiO-CRL remained 55%. Preparation of fatty acids from high-acid-value by-products through biosystem shows great industrial potential.
酸化油是从作物炼油工业的副产品中获得的,被认为是生产脂肪酸的低成本材料。脂肪酶催化酸化油水解生产脂肪酸是一种可持续且高效的生物过程,可替代连续逆流水解。在这项研究中,通过共价结合策略将来自 Candida rugosa(CRL)的脂肪酶固定在磁性 FeO@SiO 上,以高效水解酸化大豆油。使用 FTIR、XRD、SEM 和 VSM 对固定化脂肪酶(FeO@SiO-CRL)进行了表征。确定了 FeO@SiO-CRL 的酶性质。使用 FeO@SiO-CRL 催化酸化大豆油的水解以生产脂肪酸。研究了催化反应条件,包括催化剂用量、反应时间和油水比。优化结果表明,在 10 wt.%(油)催化剂、3:1(v/v)油水比和 313 K 下反应 12 h 后,水解率达到 98%。经过 5 次循环后,FeO@SiO-CRL 的水解活性仍保持在 55%。通过生物体系从高酸值副产物制备脂肪酸显示出巨大的工业潜力。