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微生物碳酸酐酶介导的碳捕获、封存和利用:提供生物可再生能源的可持续方法。

Microbial carbonic anhydrase mediated carbon capture, sequestration & utilization: A sustainable approach to delivering bio-renewables.

机构信息

Enzyme and Microbial Biochemistry Laboratory, Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

Enzyme and Microbial Biochemistry Laboratory, Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

Bioresour Technol. 2022 Dec;365:128174. doi: 10.1016/j.biortech.2022.128174. Epub 2022 Oct 22.

Abstract

In the recent scenario, anthropogenic interventions have alarmingly disrupted climatic conditions. The persistent change in the climate necessitates carbon neutrality. Efficient ways of carbon capture and sequestration could be employed for sustainable product generation. Carbonic anhydrase (CA) is an enzyme that reversibly catalyzes the conversion of carbon dioxide to bicarbonate ions, further utilized by cells for metabolic processes. Hence, utilizing CA from microbial sources for carbon sequestration and the corresponding delivery of bio-renewables could be the eco-friendly approach. Consequently, the microbial CA and amine-based carbon capture chemicals are synergistically applied to enhance carbon capture efficiency and eventual utilization. This review comprehends recent developments coupled with engineering techniques, especially in microbial CA, to create integrated systems for CO sequestration. It envisages developing sustainable approaches towards mitigating environmental CO from industries and fossil fuels to generate bio-renewables and other value-added chemicals.

摘要

在当前的情况下,人为干预已经惊人地扰乱了气候条件。气候的持续变化需要实现碳中和。可以采用高效的碳捕获和封存方法来生产可持续产品。碳酸酐酶(CA)是一种酶,可可逆地催化二氧化碳转化为碳酸氢根离子,细胞进一步将其用于代谢过程。因此,利用微生物来源的 CA 进行碳封存,并相应地输送生物可再生资源可能是环保的方法。因此,微生物 CA 和基于胺的碳捕获化学品协同应用,以提高碳捕获效率并最终实现利用。本综述结合工程技术,特别是在微生物 CA 方面的最新进展,介绍了用于 CO 捕集的集成系统。它旨在开发可持续的方法,从工业和化石燃料中减轻环境 CO,以生成生物可再生资源和其他高附加值化学品。

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