2008Guocheng gongcheng xuebaoRequires access

Preparation of Magnetic Silica Nanoparticles and Their Application in Laccase Immobilization

Huizhou Liu

Open publisher page 8 citations

Abstract

Laccase was immobilized on the silanized magnetic silica nanoparticles by using glutaradehyde as the cross-linker. Immobilization of laccase was investigated and its immobilizing conditions were optimized. The results were achieved with the concentration of 8% glutaradehyde, immobilizing time of 6 h, the buffer of pH 7.0 and initial laccase concentration of 0.15 g/L. The optimum pH and temperature of immobilized laccase were 4.0 and 20℃, respectively. After the immobilized enzyme was kept at 60℃ for 4 h, it remained 60.9% of its initial activity. The immobilized laccase could retain above 55% of activity after 10 consecutive operations. The experimental results showed that the thermal stability and operational stability of immobilized laccase were improved in comparison with free laccase.

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What this paper is about

Laccase was immobilized on the silanized magnetic silica nanoparticles by using glutaradehyde as the cross-linker. Immobilization of laccase was investigated and its immobilizing conditions were optimized. The results were achieved with the concentration of 8% glutaradehyde, immobilizing time of 6 h, the buffer of pH 7.0 and initial laccase concentration of 0.15 g/L. The optimum pH and temperature of immobilized laccase were 4.0 and 20℃, respectively. After the immobilized enzyme was kept at 60℃ for 4 h, it remained 60.9% of its initial activity. The immobilized laccase could retain above 55% of activity after 10 consecutive operations. The experimental results showed that the thermal stability and operational stability of immobilized laccase were improved in comparison with free laccase.

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Available abstract

Laccase was immobilized on the silanized magnetic silica nanoparticles by using glutaradehyde as the cross-linker. Immobilization of laccase was investigated and its immobilizing conditions were optimized. The results were achieved with the concentration of 8% glutaradehyde, immobilizing time of 6 h, the buffer of pH 7.0 and initial laccase concentration of 0.15 g/L. The optimum pH and temperature of immobilized laccase were 4.0 and 20℃, respectively. After the immobilized enzyme was kept at 60℃ for 4 h, it remained 60.9% of its initial activity. The immobilized laccase could retain above 55% of activity after 10 consecutive operations. The experimental results showed that the thermal stability and operational stability of immobilized laccase were improved in comparison with free laccase.

Key concepts: Laccase, Immobilized enzyme, Chemistry, Thermal stability, Nanoparticle, Chromatography, Magnetic nanoparticles, Nuclear chemistry

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