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Degradation of chlortetracycline using immobilized laccase on Polyacrylonitrile-biochar composite nanofibrous membrane

机译:固定化漆酶在聚丙烯腈-生物炭复合纳米纤维膜上降解金霉素

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摘要

The continuous release of antibiotic compounds through wastewater effluent into environment has raised concerns about their potential problems for different organisms. Enzymatic degradation with laccase is a green option for removal of pharmaceutical compounds from aqueous media. In this study, laccase was immobilized onto homemade Polyacrylonitrile-biochar composite nanofibrous membrane and the obtained biocatalyst was employed for removal of chlortetracycline, a widely used antibiotic, from aqueous media in continuous mode. The results showed that the immobilized laccase has improved storage, temperature and pH stability compared to free laccase. Also, it retained more than 50% of its initial activity after 7 cycles of ABTS oxidation which indicated improved enzyme reusability. Finally, while using immobilized laccase for degradation of chlortetracycline in continuous mode exhibited 583%, 40.7% and 22.6% chlortetracycline removal efficiency at flux rates of 1,2 and 3 ml/h-cm2.
机译:通过废水中的抗生素化合物不断释放到环境中,引起了人们对不同生物体潜在问题的担忧。用漆酶进行酶降解是从水性介质中去除药物化合物的绿色选择。在这项研究中,漆酶被固定在自制的聚丙烯腈-生物炭复合纳米纤维膜上,并且所获得的生物催化剂被用于以连续模式从水性介质中去除广泛使用的抗生素金霉素。结果表明,与游离漆酶相比,固定化漆酶具有更好的储存,温度和pH稳定性。同样,在ABTS氧化的7个循环后,它保留了其初始活性的50%以上,表明酶的可重复使用性得到改善。最后,当使用固定的漆酶以连续模式降解金霉素时,在1,2和3 ml / h-cm2的通量下,金霉素的去除率分别为583%,40.7%和22.6%。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第15期|315-321|共7页
  • 作者单位

    INRS-ETE, University du Quebec. 490, Ruedela Couronne, Quebec, Canada G1K 9A9;

    INRS-ETE, University du Quebec. 490, Ruedela Couronne, Quebec, Canada G1K 9A9;

    INRS-ETE, University du Quebec. 490, Ruedela Couronne, Quebec, Canada G1K 9A9;

    Departement de Physique, Universite Laval Quebec G1K 7P4, Canada;

    C02 Solutions inc., 2300, rue Jean-Perrin, Quebec, Qubec C2C 1T9, Canada;

    Department of Civil Engineering, University of Nebraska-Lincoln, N104 SEC PO Box 886105, Lincoln, NE 68588-6105, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanofibrous; Immobilization; Antibiotics; Enzyme; Degradation;

    机译:纳米纤维固定;抗生素;酶降解;

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