Laccase immobilized on mesoporous SiO2 and its use for degradation of chlorophenol pesticides
- Authors: Yang Y.1, Xu Y.1, Yang Y.1, Yang H.1, Yuan H.2, Huang Y.1, Liu X.3
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Affiliations:
- School of Chemistry and Molecular Engineering
- State Key Laboratory of Inorganic Synthesis and Preparative Chemistry
- Analysis Test Center
- Issue: Vol 90, No 10 (2016)
- Pages: 2044-2054
- Section: Physical Chemistry of Surface Phenomena
- URL: https://journal-vniispk.ru/0036-0244/article/view/168870
- DOI: https://doi.org/10.1134/S0036024416100307
- ID: 168870
Cite item
Abstract
In this paper, mesoporous silica with large specific surface area was used to immobilize laccase by the glutaraldehyde cross-linking method, and after screening and optimization experiments, the best enzyme immobilization process conditions were found (25°C, pH 5.4, 4% glutaraldehyde and 0.2 g/L laccase, treatment time 6 h). After that, the removal and degradation ratio of 2,4-dichlorophenol (abbreviated as DCP) under different conditions were also studied. After the degradation process was performed for 6 h at 30°C, pH 5.4, and DCP initial concentration of 50 mg/L in the presence of 0.1 g of immobilized laccase, the removal ratio and the degradation ratio were 42.28 and 15.93%, respectively. Compared with free laccase, the reusability of immobilized laccase is significantly improved.
About the authors
Yuxiang Yang
School of Chemistry and Molecular Engineering
Author for correspondence.
Email: yxyang@ecust.edu.cn
China, Shanghai, 200237
Yong Xu
School of Chemistry and Molecular Engineering
Email: huangyan@ecust.edu.cn
China, Shanghai, 200237
Yiwen Yang
School of Chemistry and Molecular Engineering
Email: huangyan@ecust.edu.cn
China, Shanghai, 200237
Huan Yang
School of Chemistry and Molecular Engineering
Email: huangyan@ecust.edu.cn
China, Shanghai, 200237
Hongmin Yuan
State Key Laboratory of Inorganic Synthesis and Preparative Chemistry
Email: huangyan@ecust.edu.cn
China, Changchun, 130012
Yan Huang
School of Chemistry and Molecular Engineering
Author for correspondence.
Email: huangyan@ecust.edu.cn
China, Shanghai, 200237
Xiangnong Liu
Analysis Test Center
Email: huangyan@ecust.edu.cn
China, Yangzhou, 225009
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