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利用酶回收进行甜菜酶解的工艺开发,用于生产可溶性糖。

Process development of sugar beet enzymatic hydrolysis with enzyme recycling for soluble sugar production.

机构信息

Department of Biological and Agricultural Engineering, University of California, Davis, USA.

Department of Biotechnology, Faculty of Science, Mahidol University, Bangkok, Thailand.

出版信息

Bioprocess Biosyst Eng. 2022 Aug;45(8):1297-1309. doi: 10.1007/s00449-022-02742-8. Epub 2022 Jul 2.

Abstract

Enzymatic hydrolysis of sugar beets for achieving liquefaction and sugar release is a critical step for beet-ethanol production. An enzyme recycling process was developed in this study to reduce the economic uncertainty raised by the high costs of enzymes by reducing the fresh enzyme usage. A mixture of cellulases and pectinases was used in the beet hydrolysis. The hydrolysate was centrifuged and then processed through a 50 kDa molecular weight cut-off polyethersulfone membrane to recover enzymes from the liquid. Liquid enzyme recycling with 50% fresh enzyme addition achieved a similar liquefaction extent and sugar yield compared to the positive control with 100% fresh enzyme. Solid enzyme recycling showed a lower liquefaction efficiency, requiring at least 75% of fresh enzyme addition for a comparable liquefaction extent. Five sequential batches of hydrolysis with liquid enzyme recycling were successfully conducted to hydrolyze sugar beets with similar liquefaction extents and sugar yields.

摘要

酶解糖甜菜以实现液化和糖的释放是甜菜乙醇生产的关键步骤。本研究开发了一种酶回收工艺,通过减少新鲜酶的使用来降低酶的高成本所带来的经济不确定性。在甜菜水解中使用了纤维素酶和果胶酶的混合物。水解液经过离心,然后通过 50 kDa 分子量截止聚醚砜膜进行处理,以从液体中回收酶。与 100%新鲜酶的阳性对照相比,添加 50%新鲜酶的液体酶回收可实现相似的液化程度和糖产率。固体酶回收的液化效率较低,需要至少添加 75%的新鲜酶才能达到可比的液化程度。成功进行了五次连续的液体酶回收水解批次,以实现具有相似液化程度和糖产率的糖甜菜水解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18ac/9363316/9dae81ab1947/449_2022_2742_Fig1_HTML.jpg

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