成人免费xx,国产又黄又湿又刺激不卡网站,成人性视频app菠萝网站,色天天天天

ChemicalBook >> journal list >> Journal of Hazardous Materials >>article
Journal of Hazardous Materials

Journal of Hazardous Materials

IF: 12.19
Download PDF

Cerium-based nanohydrolase for fast catalytic hydrolysis of β-lactam antibiotics in wastewater effluents

Published:5 December 2024 DOI: 10.1016/j.jhazmat.2024.136800
Wen-Yuan Fan, Xin Zhang, Dong-Hua Xie, Kenneth Mei Yee Leung, Guo-Ping Sheng

Abstract

To defuse risks of antibiotic residues in effluent to achieve safe wastewater reuse, direct hydrolysis of the functional group responsible for the antibacterial activity, such as the of β-lactam ring in β-lactam antibiotics, has been recognized as an efficient and cost-effective strategy. However, the instability of natural hydrolases limits their use in treating antibiotic-containing wastewater. Herein, inspired by the active site of natural hydrolase, a Ce-based nanohydrolase was created for rapid hydrolysis of β-lactam antibiotics. The typical β-lactam antibiotic, penicillin G (PG), could be totally removed by the nanohydrolase within 2?min with a hydrolysis efficiency of 44%, and the hydrolysis efficiency could reach 98% within 10?min. It revealed that Ce(IV) in the nanohydrolase adsorbed PG via Lewis acid-Lewis base interaction to activate the β-lactam ring, while the -OH on Ce(III) served as nucleophile to attack the β-lactam ring, thereby promoting the hydrolysis of PG. The Ce-based nanohydrolase also showed good catalytic hydrolysis performance towards other commonly used β-lactam antibiotics and structurally related chemicals, implying its substrate universality. In addition to having high hydrolytic activity similar to that of natural hydrolases, this nanohydrolase exhibited extraordinary reusability and potential for practical applications that natural hydrolases do not possess. This work offers an innovative strategy to eliminate the risks of hydrolysable micropollutants in wastewater effluents and also provides reference for designing better nanohydrolase.

Substances (10)

Materials
Procduct Name CAS Molecular Formula Supplier Price
Isopropyl alcohol 67-63-0 C3H8O 1647 suppliers $7050.00
Ascorbic Acid 50-81-7 C6H8O6 1626 suppliers $6.00-$2170.00
N,N-Dimethylformamide 68-12-2 C3H7NO 1214 suppliers $11.20-$12200.00
Sodium chloride 7647-14-5 ClNa 1214 suppliers $5.00-$6678.62
Formic acid 64-18-6 CH2O2 1166 suppliers $22.13-$5923.38
Methanol 67-56-1 CH4O 836 suppliers $9.00-$7620.00
Sodium sulfate 7757-82-6 Na2SO4 836 suppliers $6.00-$3655.00
Urea 57-13-6 CH4N2O 777 suppliers $5.00-$9263.00
Sodium fluoride 7681-49-4 FNa 538 suppliers $10.00-$10640.00
CERIUM(III) NITRATE HEXAHYDRATE 10294-41-4 CeH3NO4 267 suppliers $21.28-$3594.71

Similar articles

IF:3.2

β-Galactosidase: Immune recognition of conformation and mechanism of antibody-induced catalytic activation

Biopolymers Franco Celada, Roberto Strom,etc Published: 1 January 1983
IF:7.7

Fe-coordinated carbon dots with single atom nanozyme catalytic activity for synergistic catalytic/chemo-therapy in breast cancer

International Journal of Biological Macromolecules Mengke Lu, Jianxia Ding,etc Published: 1 December 2024