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首页> 外文期刊>International Journal of Molecular Sciences >Preparation of a Cu(II)-PVA/PA6 Composite Nanofibrous Membrane for Enzyme Immobilization
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Preparation of a Cu(II)-PVA/PA6 Composite Nanofibrous Membrane for Enzyme Immobilization

机译:固定化酶的Cu(II)-PVA / PA6复合纳米纤维膜的制备

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PVA/PA6 composite nanofibers were formed by electrospinning. Cu(II)-PVA/PA6 metal chelated nanofibers, prepared by the reaction between PVA/PA6 composite nanofibers and Cu2+ solution, were used as the support for catalase immobilization. The result of the experiments showed that PVA/PA6 composite nanofibers had an excellent chelation capacity for Cu2+ ions, and the structures of nanofibers were stable during the reaction with Cu2+ solution. The adsorption of Cu(II) onto PVA/PA6 composite nanofibers was studied by the Langmuir isothermal adsorption model. The maximum amount of coordinated Cu(II) (qm) was 3.731 mmol/g (dry fiber), and the binding constant (Kl) was 0.0593 L/mmol. Kinetic parameters were analyzed for both immobilized and free catalases. The value of Vmax (3774 μmol/mg·min) for the immobilized catalases was smaller than that of the free catalases (4878 μmol/mg·min), while the Km for the immobilized catalases was larger. The immobilized catalases showed better resistance to pH and temperature than that of free form, and the storage stabilities, reusability of immobilized catalases were significantly improved. The half-lives of free and immobilized catalases were 8 days and 24 days, respectively.
机译:PVA / PA6复合纳米纤维是通过静电纺丝形成的。通过PVA / PA6复合纳米纤维与Cu 2 + 溶液反应制备的Cu(II)-PVA / PA6金属螯合纳米纤维被用作过氧化氢酶固定化的载体。实验结果表明,PVA / PA6复合纳米纤维对Cu 2 + 离子具有极好的螯合能力,并且在与Cu 2 + 解决方案。利用Langmuir等温吸附模型研究了Cu(II)在PVA / PA6复合纳米纤维上的吸附。配位Cu(II)(q m )的最大量为3.731 mmol / g(干纤维),结合常数(K l )为0.0593 L / mmol 。动力学参数分析了固定和自由的过氧化氢。固定过氧化氢酶的V max 值(3774μmol/ mg·min)小于游离过氧化氢酶的值(4878μmol/ mg·min),而K m

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