漆酶
生物降解
利福平
林可霉素
泄漏(经济)
化学
组合化学
制浆造纸工业
有机化学
抗生素
生物化学
酶
工程类
宏观经济学
经济
作者
Chang Liu,Xiaoyue Zhang,Yu Zhou,Lin Zhu,Chengyu Zhang,Xiaohui Yan,Shengping You,Wei Qi,Rongxin Su
标识
DOI:10.1016/j.bej.2023.108897
摘要
The enzyme leakage in physical adsorption dramatically limits the application of immobilized laccase (Lac) in environmental treatment. Therefore, a leakage-proof Zr-based metal-organic framework (MOF) carrier, UiO-66-NH2(30), was constructed for the stable loading of Lac and efficient antibiotic biodegradation, which could fix the Lac inside the carrier rather than only adsorbed on the surface. Based on the aperture modulation strategy, the pore size distribution of MOFs at about 10 nm was significantly increased to match the diameter of Lac (7.6 nm), by which [email protected]2(30) was successfully prepared with a high enzyme loading amount (275.96 mg/g) and high enzyme recovery (618 %). The immobilized [email protected]2(30) could nearly 100 % biodegrade rifampicin and lincomycin in 6 min and 6 h, respectively, and after 8 times reuse, the degradation rates of antibiotics remained at 81.46 % and 76.12 %, which showed excellent reusability and stability. Overall, [email protected]2(30) is expected to be an ideal candidate for pollution control.
科研通智能强力驱动
Strongly Powered by AbleSci AI