乳克鲁维酵母
壳聚糖
固定化酶
乳糖
化学
水解
复合数
酵母
酶
化学工程
酶分析
色谱法
材料科学
核化学
食品科学
有机化学
生物化学
复合材料
酿酒酵母
工程类
作者
Natália Carminatti Ricardi,Eliana Weber de Menezes,Edílson V. Benvenutti,Jéssie da Natividade Schöffer,Camila Regina Hackenhaar,Plinho Francisco Hertz,Tânia Maria Haas Costa
标识
DOI:10.1016/j.foodchem.2017.11.026
摘要
β-d-Galactosidase is an important enzyme in the dairy industry, and the enzyme from the yeast Kluyveromyces lactis is most widely used. Here, we report immobilization of the enzyme on a silica/chitosan composite support, devised to have 10% and 20% chitosan (SiQT10 and SiQT20, respectively). Morphological and textural characterizations showed that chitosan is dispersed in micrometric regions in silica. For comparison, a silica organofunctionalized with 3-aminopropyltrimethoxysilane (SiO2aptms) was prepared. Performance of the biocatalysts was tested for lactose hydrolysis, and the enzyme immobilized in SiQT10 and SiQT20 composites showed higher efficiency (62% and 47%, respectively) compared with the enzyme in SiO2aptms. Operational stability in this system was evaluated for the first time. After 200 h of continuous use in a fixed-bed reactor, SiQT10 remained with approximately 90% activity. Thus, in addition to demonstrating compatibility for food processing, these results align the enzyme stabilization properties of chitosan with the mechanical resistance of silica.
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