Immobilization of laccase on magnetically separable biochar for highly efficient removal of bisphenol A in water

Laccase was stably immobilized on a cost effective and nanosized magnetic biochar (L-MBC) by adsorption, precipitation and crosslinking, and it was used for high performance BPA removal. A large amount of enzyme could be immobilized on the magnetic biochar with high activity (2.251 U per mg MBC), an...

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Veröffentlicht in:RSC advances 2020-01, Vol.10 (8), p.4795-4804
Hauptverfasser: Zhang, Yu, Piao, Mingyue, He, Lingzhi, Yao, Lan, Piao, Tiezhu, Liu, Zairan, Piao, Yunxian
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Sprache:eng
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Zusammenfassung:Laccase was stably immobilized on a cost effective and nanosized magnetic biochar (L-MBC) by adsorption, precipitation and crosslinking, and it was used for high performance BPA removal. A large amount of enzyme could be immobilized on the magnetic biochar with high activity (2.251 U per mg MBC), and the L-MBC could be magnetically separated from the aqueous solution in 20 seconds. The successful immobilization of laccase was also confirmed FTIR, SEM, and EDS analyses. The L-MBC presented better storage and stability performances, pH tolerance and thermal stability than the free laccase. It was found that BPA with an initial concentration of 25 mg L could be thoroughly removed within 75 min, where BPA removal was attributed to enzymatic degradation and adsorption. In addition, the BPA removal efficiency by the L-MBC could be maintained above 85% even after seven cycles of repeated use. Due to high stability and efficient recyclability, the L-MBC-based biocatalyst has the potential to be a reliable method for treating BPA in environmental water sources.
ISSN:2046-2069
2046-2069
DOI:10.1039/c9ra08800h