工业与生产工程
还原胺化
胺气处理
化学
胺化
脱氢酶
生物催化
溶剂
催化作用
固定化酶
有机化学
组合化学
酶
反应机理
工程类
电气工程
作者
Pengcheng Xie,Lan Jin,Jingshuan Zhou,Zhun Hu,Jiandong Cui,Ge Qu,Bo Yuan,Zhoutong Sun
标识
DOI:10.1186/s40643-024-00786-0
摘要
Abstract Reductive amination by amine dehydrogenases is a green and sustainable process that produces only water as the by-product. In this study, a continuous flow process was designed utilizing a packed bed reactor filled with co-immobilized amine dehydrogenase wh84 and glucose dehydrogenase for the highly efficient biocatalytic synthesis of chiral amino alcohols. The immobilized amine dehydrogenase wh84 exhibited better thermo-, pH and solvent stability with high activity recovery. ( S )-2-aminobutan-1-ol was produced in up to 99% conversion and 99% ee in the continuous flow processes, and the space-time yields were up to 124.5 g L -1 d -1 . The continuous reactions were also extended to 48 h affording up to 91.8% average conversions. This study showcased the important potential to sustainable production of chiral amino alcohols in continuous flow processes.
科研通智能强力驱动
Strongly Powered by AbleSci AI