生物修复
生化工程
生物能源
污染物
生物催化
持续性
环境友好型
环境科学
生物燃料
生物技术
化学
生物
工程类
生态学
污染
有机化学
催化作用
离子液体
作者
Shafiul Haque,R. P. Singh,Steve Harakeh,Addisu Demeke Teklemariam,Saif A. Alharthy,S. C. Tripathi,Ravindra Pratap Singh,Ashraf Aly Hassan,Neha Srivastava,Vijai Kumar Gupta
标识
DOI:10.1016/j.cogsc.2022.100709
摘要
Enzyme-based biocatalysis is emerging as an advanced technique to develop green processes that help to maintain the sustainability of the environment. The bioremediation of toxic organic pollutants and waste to bioenergy production using enzymes as biocatalysts is rapidly growing due to its eco-friendly and sustainable nature. Additionally, a range of microbial species that typically grow on organic wastes can be used to produce these enzymes in an efficient manner. This is seen as a potential strategy for the development of cost-effective manufacturing for a number of biotechnological applications. The present study discusses biocatalysis as a promising and sustainable method toward the bioremediation of hazardous organic pollutants as well as for bioenergy production, based on the immense potential of enzymes as biocatalysts. Emphasis has been placed on evaluating the critical elements that can enhance the production of enzymes used as biocatalysts, as well as their functional effectiveness and stability.
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