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Design and optimization of an enzymatic membrane reactor for tetracycline degradation

机译:四环素降解酶膜反应器的设计与优化

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摘要

The tetracycline, antibiotic considered as a recalcitrant pollutant, was successfully depleted from model aqueous solutions by immobilized laccase from Trametes versicolor in an enzymatic membrane reactor. The results obtained show that tetracycline is depleted from water solutions at room temperature and without adding any extra chemicals. The degradation of tetracycline in aqueous solutions at 20 mg L~(-1) during 24 h, with equivalent amounts of free or immobilized biocatalyst, allowed reaching a tetracycline degradation yield of 56% with an enzymatic membrane whereas it was only of 30% with free laccase. This result highlights the good reactivity and stability of the immobilized enzyme for the degradation of tetracycline. Moreover, the enzymatic membrane reactor was able to reach a constant degradation rate of 0.34 mg of tetracycline per hour during 10 days.
机译:四环素,被认为是顽固性污染物,已通过酶膜反应器中固定的云芝Trametes漆酶成功地从模型水溶液中消除。获得的结果表明,在室温下从水溶液中消耗了四环素,并且没有添加任何额外的化学物质。在24 mg L〜(-1)的条件下,在24 h内降解四环素的过程中,当使用等量的游离或固定化生物催化剂时,用酶促膜降解四环素的产率为56%,而用酶促膜降解的四环素仅为30%。免费的漆酶。该结果突出了固定化酶对四环素降解的良好反应性和稳定性。此外,酶促膜反应器能够在10天之内达到每小时0.34 mg四环素的恒定降解率。

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