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Gluconic Acid Production in Bioreactor with Immobilized Glucose Oxidase Plus Catalase on Polymer Membrane Adjacent to Anion-Exchange Membrane

机译:在与阴离子交换膜相邻的聚合物膜上固定化葡萄糖氧化酶加过氧化氢酶在生物反应器中生产葡萄糖酸

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Gluconic acid was obtained in the permeate side of the bioreactor with glucose oxidase (GOD) immobilized onto anion-exchange membrane (AEM) of low-density polyethylene grafted with 4-vinylpiridine. The electric resistance of the anion-exchange membranes was increased after the enzyme immobilization on the membrane. The gluconic acid productions were relatively low with the GOD immobilized by any method on the AEM. To increase the enzyme reaction efficiency, GOD was immobilized on membrane of AN copolymer (PAN) adjacent to an anion-exchange membrane in bioreactor. Uses of anion-exchange membrane led to selective removal of the gluconic acid from the glucose solution and reduce the gluconic acid inhibition. The amount of gluconic acid obtained in the permeate side of the bioreactor with the GOD immobilized on the PAN membrane adjacent to the AEM under electrodialysis was about 30 times higher than that obtained with enzyme directly bound to the AEM. The optimal substrate concentration in the feed side was found to be about 1 g/l. Further experiments were carried out with the co-immobilized GOD plus Catalase (CAT) on the PAN membrane adjacent to the AEM to improve the efficiency of the immobilize system. The yield of this process was at least 95%. The storage stability of the co-immobilized GOD and CAT was studied (lost 20% of initial activity for 90 d). The results obtained clearly showed the higher potential of the dual membrane bioreactor with GOD plus CAT bound to ultrafiltration polymer membrane adjacent to the AEM.
机译:通过将葡萄糖氧化酶(GOD)固定在嫁接有4-乙烯基吡啶的低密度聚乙烯的阴离子交换膜(AEM)上,在生物反应器的渗透侧获得了葡萄糖酸。酶固定在膜上后,阴离子交换膜的电阻增加。通过任何方法将AOD固定在AEM上时,葡萄糖酸的产量相对较低。为了提高酶反应效率,将GOD固定在生物反应器中与阴离子交换膜相邻的AN共聚物(PAN)的膜上。阴离子交换膜的使用导致从葡萄糖溶液中选择性除去葡糖酸并减少了葡糖酸的抑制。在电渗析条件下,在生物反应器的渗透侧将GOD固定在与AEM相邻的PAN膜上的葡萄糖水平比在AEM上直接结合的酶高出约30倍。发现进料侧的最佳底物浓度为约1g / l。使用共固定的GOD加过氧化氢酶(CAT)在邻近AEM的PAN膜上进行了进一步的实验,以提高固定系统的效率。该方法的产率至少为95%。研究了共同固定的GOD和CAT的储存稳定性(在90 d内失去了20%的初始活性)。获得的结果清楚地表明,结合了GOD和CAT的双膜生物反应器具有更高的潜力,该膜结合到与AEM相邻的超滤聚合物膜上。

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