生物催化中的酶微反应器:历史、特点和未来展望

E. Laurenti, Ardson dos Santos Vianna Jr.
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引用次数: 34

摘要

微流控反应装置是一种非常有前途的化学和生化工艺技术。在微反应器中,微尺寸加上高表面积/体积比,允许快速的热交换和传质,从而产生比传统反应器更高的反应收率和反应速率。此外,与大型常规反应器相比,较低的能耗和更容易分离的产品使这些系统对环境的影响更小。由于这些优点,微反应器在生物催化领域的应用越来越多,包括在溶液中使用酶和固定化酶。在介绍了微反应器在化学过程中最常见的应用之后,将广泛概述在微反应器中使用游离酶或固定化酶进行的生物催化过程中的最新应用。特别要注意的是,作为酶的支持材料的性质和用于固定它们的策略。有关微反应器流体动力学的数学和工程方面也被考虑为优化这些系统的基本因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enzymatic microreactors in biocatalysis: history, features, and future perspectives
Abstract Microfluidic reaction devices are a very promising technology for chemical and biochemical processes. In microreactors, the micro dimensions, coupled with a high surface area/volume ratio, permit rapid heat exchange and mass transfer, resulting in higher reaction yields and reaction rates than in conventional reactors. Moreover, the lower energy consumption and easier separation of products permit these systems to have a lower environmental impact compared to macroscale, conventional reactors. Due to these benefits, the use of microreactors is increasing in the biocatalysis field, both by using enzymes in solution and their immobilized counterparts. Following an introduction to the most common applications of microreactors in chemical processes, a broad overview will be given of the latest applications in biocatalytic processes performed in microreactors with free or immobilized enzymes. In particular, attention is given to the nature of the materials used as a support for the enzymes and the strategies employed for their immobilization. Mathematical and engineering aspects concerning fluid dynamics in microreactors were also taken into account as fundamental factors for the optimization of these systems.
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