Department of Chemistry, University of Patras, Patras, Greece.
Prep Biochem Biotechnol. 2012;42(5):489-506. doi: 10.1080/10826068.2012.657820.
The technique of reversed-flow gas chromatography (RFGC) was employed for the determination of the alcoholic fermentation phases and of kinetic parameters for free and immobilized cell systems, at different initial glucose concentrations and temperature values. In addition to this, due to its considerable advantages over other techniques, RFGC was used for the characterization of a new biocatalyst, yeast cells immobilized on starch gel, and especially wheat starch gel. Immobilization of wine yeast Saccharomyces cerevisiae AXAZ-1 was accomplished on wheat and corn starch gels in order to prepare new biocatalysts with great interest for the fermentation industry. The RFGC led with great accuracy, resulting from a literature review, to the determination of reaction rate constants and activation energies at each phase of the fermentation processes. A maximum value of rate constants was observed at initial glucose concentration of 205 g/L, where a higher number of yeast cells was observed. The increase of glucose concentrations had a negative influence on the growth of AXAZ-1 cells and rate constants were decreased. The decrease of fermentation temperature caused a substantial reduction in the viability of immobilized cells as well as in rate constant values. Activation energies of corn starch gel presented lower values than those of wheat starch gel. However, the two supports showed higher catalytic efficiency than free cell systems, proving that starch gels may act as a promoter of the catalytic activity of the yeast cells involved in the fermentation process.
采用逆流气相色谱 (RFGC) 技术,在不同初始葡萄糖浓度和温度值下,测定游离细胞和固定化细胞体系的酒精发酵阶段和动力学参数。此外,由于 RFGC 相对于其他技术具有相当大的优势,因此用于表征新型生物催化剂,即固定在淀粉凝胶上的酵母细胞,特别是小麦淀粉凝胶。为了制备对发酵工业具有重要意义的新型生物催化剂,将葡萄酒酵母 Saccharomyces cerevisiae AXAZ-1 固定在小麦和玉米淀粉凝胶上。通过文献综述,RFGC 非常准确地确定了发酵过程各阶段的反应速率常数和活化能。在初始葡萄糖浓度为 205 g/L 时观察到最大速率常数值,此时观察到更多的酵母细胞。葡萄糖浓度的增加对 AXAZ-1 细胞的生长产生了负面影响,速率常数降低。发酵温度的降低导致固定化细胞的活力以及速率常数值大幅降低。玉米淀粉凝胶的活化能值低于小麦淀粉凝胶。然而,两种载体都显示出比游离细胞体系更高的催化效率,证明淀粉凝胶可以作为参与发酵过程的酵母细胞的催化活性的促进剂。