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Continuous enzymatic synthesis of lactulose in packed-bed reactor with immobilized Aspergillus oryzae beta-galactosidase

机译:用固定的曲霉菌葡萄牙葡萄虫β-半乳糖苷酶连续酶促合成填充床反应器中的乳胶糖糖

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摘要

Lactulose synthesis from fructose and lactose in continuous packed-bed reactor operation with glyoxyl-agarose immobilized Aspergillus oryzae beta-galactosidase is reported for the first time. Alternative strategies to conventional batch synthesis have been scarcely explored for lactulose synthesis. The effect of flow rate, substrates ratio and biocatalyst-inert packing material mass ratio (M-B/M-IM) were studied on reactor performance. Increase in any of these variables produced an increase in lactulose yield (Y-Lu) being higher than obtained in batch synthesis at comparable conditions. Maximum Y-Lu of 0.6 g.g(-1) was obtained at 50 degrees C, pH 4.5, 50% w/w total sugars, 15 mL.min(-1), fructose/lactose molar ratio of 12 and M-B/M-IM of 1/8 g.g(-1); at such conditions yield of trans-galactosylated oligosaccharides (Y-TOS) was 0.16 g.g(-1), selectivity (lactulose/TOS molar ratio) was 5.4 and lactose conversion (X-Lactose) was 28%. Reactor operation with recycle had no significant effect on yield, producing only some decrease in productivity.
机译:第一次报道,连续填充床反应器操作中乳糖和乳糖的连续填充床反应器操作中的乳糖合成了糖氧吡咯醇,曲霉β-半乳糖苷酶。乳果合成几乎探讨了常规批量合成的替代策略。研究了流速,底物比和生物催化剂 - 惰性包装材料质量比(M-B / M-IM)对反应器性能进行了影响。这些变量中的任何一个增加产生乳糖产率(Y-LU)的增加高于在可比条件下在批量合成中获得的。在50℃,pH 4.5,50%w / w总糖,15ml.min(-1),果糖/乳糖摩尔比为12和MB / m-中获得0.6gg(-1)的最大Y-Lu。 IM为1/8 gg(-1);在这样的条件下,转铁半乳糖基化的寡糖(Y-TOS)的产率为0.16g(-1),选择性(乳糖/ TOS摩尔比)为5.4,乳糖转化率(X-乳糖)为28%。随着回收的反应器操作对产量没有显着影响,仅生产生产力的一些降低。

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