Process intensification using immobilized enzymes

Q2 Physics and Astronomy
Sera Bolat, Ralph Greifenstein, M. Franzreb, D. Holtmann
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引用次数: 0

Abstract

Abstract The application potential of enzymes is undoubtedly very high. However, despite the very large number of different enzymes and enzyme activities, the number of industrial enzyme processes is comparatively small. The particular challenge often lies in transferring promising laboratory processes to an industrial scale. Here, the required performance parameters, such as enzyme stability or productivity, must be achieved. On the one hand, this can be achieved by improving the enzymes. On the other hand, the key performance indicators can often only be achieved by using technical systems in the sense of process intensification. In enzymatic processes, immobilization of enzymes is often the means of choice to enable technical processes. The aim of this article is to outline the most important enzyme immobilization methods and to summarize the most important performance indicators of immobilized enzymes. Finally, the different immobilization methods and performance indicators are compared in a case study with unspecific peroxygenase.
固定化酶强化工艺
酶的应用潜力无疑是非常大的。然而,尽管有大量不同的酶和酶活性,但工业酶过程的数量相对较少。特别的挑战往往在于将有前途的实验室过程转化为工业规模。在这里,必须达到所需的性能参数,例如酶的稳定性或生产力。一方面,这可以通过改善酶来实现。另一方面,关键绩效指标往往只能通过使用过程强化意义上的技术系统来实现。在酶的过程中,酶的固定化往往是选择的手段,使技术过程。本文的目的是概述最重要的酶固定化方法和总结固定化酶的最重要的性能指标。最后,以非特异性过氧酶为例,比较了不同的固定方法和性能指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Physical Sciences Reviews
Physical Sciences Reviews MULTIDISCIPLINARY SCIENCES-
CiteScore
2.40
自引率
0.00%
发文量
173
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