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在连续流反应器中用希腊酸奶酸乳生产葡萄糖-半乳糖糖浆的催化作用。

Catalytic Production of Glucose-Galactose Syrup from Greek Yogurt Acid Whey in a Continuous-Flow Reactor.

机构信息

Department of Chemical and Biological Engineering, University of Wisconsin-Madison, 1415 Engineering Drive, Madison, WI, 53706, USA.

Department of Food Science, University of Wisconsin-Madison, 1605 Linden Dr, Madison, WI, 53706, USA.

出版信息

ChemSusChem. 2020 Feb 21;13(4):791-802. doi: 10.1002/cssc.201902847. Epub 2020 Jan 21.

Abstract

The hydrolysis of lactose in aqueous solutions and dairy waste streams was studied using Amberlyst 70 as a heterogeneous acid catalyst in a continuous-flow packed-bed reactor. The catalyst was stable during hydrolysis of an aqueous lactose feed but deactivated owing to mineral poisoning when the dairy waste Greek yogurt acid whey (GAW) was used as the feedstock. A catalyst deactivation model was developed and showed that the deactivation of the Amberlyst 70 catalyst was proportional to the amounts of cations, urea and amino acids flowing through the catalyst bed. The Amberlyst 70 catalyst was regenerable with an aqueous acid regeneration treatment. Based on the experimental data, a rigorous technoeconomic analysis was performed for the production of glucose-galactose syrup (GGS) via lactose hydrolysis of GAW using three different catalysts. This approach shows that the GGS produced from GAW could become a valuable revenue stream for Greek yogurt manufacturers.

摘要

采用 Amberlyst 70 作为非均相酸催化剂,在连续流填充床反应器中研究了水溶液和乳制品废水中乳糖的水解。在水解水乳糖进料时,催化剂在水解过程中稳定,但当使用乳制品废物希腊酸奶酸乳清(GAW)作为原料时,由于矿物中毒而失活。开发了一种催化剂失活动力学模型,表明 Amberlyst 70 催化剂的失活与流经催化剂床的阳离子、尿素和氨基酸的量成正比。Amberlyst 70 催化剂可以通过水相酸再生处理进行再生。基于实验数据,使用三种不同的催化剂对通过 GAW 中的乳糖水解生产葡萄糖-半乳糖糖浆(GGS)进行了严格的技术经济分析。这种方法表明,从 GAW 中生产的 GGS 可以成为希腊酸奶制造商的有价值的收入来源。

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