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Covalent immobilization of enzymes and yeast: Towards a continuous simultaneous saccharification and fermentation process for cellulosic ethanol

机译:酶和酵母的共价固定化:朝着纤维素乙醇的连续同时糖化和发酵过程发展

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The immobilization of enzymes and yeast cells is a key factor for establishing a continuous process of cellulosic ethanol production, which can combine the benefits of a separated hydrolysis and fermentation process and a simultaneous saccharification and fermentation process. This paper investigates the use of cellulase enzyme and yeast cell immobilization under a flow regime of ethanol production from soluble substrates such as cellobiose and carboxymethyl cellulose. The immobilization was achieved by incubating enzymes and yeast cells on polystyrene surfaces which had been treated by nitrogen ion implantation. The saccharification by immobilized enzymes and the fermentation by immobilized yeast cells were conducted in two separate vessels connected by a pump. During the experiments, glucose concentrations were always maintained at low levels which potentially reduce product inhibition effects on the enzymes. Covalent immobilization of enzymes and yeast cells on the plasma treated polymer reduces loss by shear flow induced detachment The potential for continuous flow production of ethanol and the influence of daughter yeast cells in the circulating flow on the immobilized enzyme activity are discussed.
机译:酶和酵母细胞的固定化是建立纤维素乙醇生产连续过程的关键因素,该过程可以结合分离的水解和发酵过程以及同时进行的糖化和发酵过程的优势。本文研究了纤维素酶和酵母细胞固定化在可溶底物(如纤维二糖和羧甲基纤维素)生产乙醇的流动机制下的应用。通过将酶和酵母细胞在经过氮离子注入处理的聚苯乙烯表面上孵育来实现固定化。固定化酶的糖化和固定化酵母细胞的发酵在两个单独的通过泵连接的容器中进行。在实验过程中,葡萄糖浓度始终保持在低水平,这可能会降低产物对酶的抑制作用。将酶和酵母细胞共价固定在经过等离子体处理的聚合物上,可减少剪切流诱导的分离所造成的损失。讨论了乙醇连续流动生产的潜力以及循环流动中子代酵母细胞对固定化酶活性的影响。

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