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Carbonic anhydrase: Its biocatalytic mechanisms and functional properties for efficient CO2 capture process development

机译:碳酸酐酶:其有效催化捕集二氧化碳过程的生物催化机制和功能特性

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摘要

The accumulation of carbon dioxide (CO2) is the main cause of global climate change and it is very important to develop technologies that can reduce atmospheric CO2 level. Although several physical or chemical CO2 capture processes are being developed, the efficiency of capture/sequestrationshould be increased. Carbonic anhydrase (CA, EC 4.2.1.1), a metalloenzyme, has been considered as an important biocatalyst for CO2 capture system development because CA has the highest efficiency of CO2 conversion via hydration (CO2 + H2O HCO3- + H+, k(cat): approximate to 10(6) s(-1)). In this review, biocatalytic mechanism and functional properties of CA are reviewed in terms of its distinctive CO2 converting ability. In addition, recent applications of several CAs are presented in CO2 capture process development. This review would present guidelines for scientists and researchers to understand CA functions and develop interest in the practical applications of CA, in particular, as biocatalytic agent for more efficient CO2 capture process development.
机译:二氧化碳(CO2)的积累是全球气候变化的主要原因,因此开发能够降低大气中CO2水平的技术非常重要。尽管正在开发几种物理或化学的二氧化碳捕集方法,但应提高捕集/隔离的效率。碳酸酐酶(CA,EC 4.2.1.1)是一种金属酶,被认为是开发CO2捕集系统的重要生物催化剂,因为CA通过水合转化CO2的效率最高(CO2 + H2O HCO3- + H +,k(cat) :约等于10(6)s(-1))。在这篇综述中,根据其独特的CO2转化能力对CA的生物催化机理和功能特性进行了综述。此外,在二氧化碳捕集工艺开发中还介绍了几种CA的最新应用。这篇综述将为科学家和研究人员提供指南,以了解CA的功能并引起人们对CA实际应用的兴趣,尤其是作为生物催化剂以更有效地捕获CO2的过程。

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