首页> 外文期刊>Journal of Engineered Fibers and Fabrics >Study on the Preparation of the AOPAN/MMT Composite Nanofibers and Their Application for Laccase Immobilization
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Study on the Preparation of the AOPAN/MMT Composite Nanofibers and Their Application for Laccase Immobilization

机译:AOPAN / MMT复合纳米纤维的制备及其在漆酶固定化中的应用研究

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In this paper, a novel nano-material was prepared, and then was applied for enzyme immobilization. Amidoxime ployarcylonitrile /montmorillonite (AOPAN/MMT) composite nanofibrous membranes were generated by electrospinning and amidoxime modification, then the nanofiber membranes were modified by glutaraldehyde; the modified AOPAN/MMT composite nanofibers were applied in laccase immobilization by adsorption and crosslinking method. Scanning electron microscopy was used to visualize the morphology of the nanofibers, and Fourier transform infrared spectroscopy was used to provide information on the surface chemistry of original and modified nanofibers. At the same time, the optimization of immobilization conditions and the relative properties of the immobilized laccase were also studied in this thesis. According to the experimental results the optimum conditions of laccase immobilization were obtained: glutaraldehyde concentration, crosslinking time, enzyme immobilization time were determined as 5%, 10 h and 12 h, respectively. The immobilized laccase showed a better stability resistance to temperature and pH change. Comparison of storage stabilities showed that the immobilized laccase retained more than 62.6% of its initial activity when stored at 4°C for 20 days. However, the free laccase lost most of its activity under the same conditions. The immobilized laccase retained 64.5% of its initial activity after 10 repeated batches of reaction.
机译:本文制备了一种新型的纳米材料,然后用于酶的固定化。通过静电纺丝和a胺肟改性制备了mid胺肟/氰基蒙脱土(AOPAN / MMT)复合纳米纤维膜,然后用戊二醛对纳米纤维膜进行了改性。将改性的AOPAN / MMT复合纳米纤维通过吸附和交联的方法应用于漆酶的固定化。使用扫描电子显微镜观察纳米纤维的形态,并使用傅里叶变换红外光谱提供原始和改性纳米纤维的表面化学信息。同时,研究了固定化漆酶的固定化条件和相对性能的优化。根据实验结果,确定了漆酶固定化的最佳条件:戊二醛浓度,交联时间,酶固定时间分别为5%,10 h和12 h。固定的漆酶对温度和pH变化表现出更好的稳定性。储存稳定性的比较表明,固定化的漆酶在4°C储存20天时,保留了其初始活性的62.6%以上。但是,游离漆酶在相同条件下丧失了大部分活性。重复10批反应后,固定的漆酶保留了其初始活性的64.5%。

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