贻贝仿生修饰多孔磁性材料的制备及其在固定化脂肪酶中的应用

Preparation of mussel-inspired porous magnetic materials for application in immobilized lipase

  • 摘要: 本文制备了一种以磁性壳聚糖为基材的多孔复合材料,通过在其表面涂覆聚多巴胺涂层替代传统的交联剂,用于脂肪酶的固定化研究。该材料具有优异的孔结构和较大的比表面积,孔容积可达0.6028 mL/g,比表面积可达106.8239 m2/g,经优化后固定化脂肪酶的酶活可达(7392.91±121.22) U/g-载体。进一步探究了固定化酶的酶学性质,得到最佳反应温度为50℃,最佳反应pH为7.0,制备的固定化酶具有优异的热稳定性和pH稳定性,经过5次循环使用后,该固定化酶可以保持80%以上的初始酶活,经过10次循环使用后仍能保持52%的初始酶活。最后,将固定化酶应用于生物柴油转化并优化了相关工艺参数。

     

    Abstract: In this study, a porous composite material based on magnetic chitosan was prepared for lipase immobilization by applying a polydopamine coating on its surface instead of the traditional cross-linking agent. The material had excellent pore structure and large specific surface area, with a pore volume of 0.6028 mL/g and a specific surface area of 106.8239 m2/g, and the highest enzyme activity of the immobilized lipase could reach up to (7392.91±121.22) U/g-carrier. In addition, the enzymatic properties of the immobilized enzyme were investigated, and the optimal reaction temperature and pH were 50℃ and 7.0, respectively. Furthermore, the prepared immobilized enzyme exhibited good thermal and pH stabilities, and could maintain above 80% of the initial enzyme activity by the immobilized enzyme after five cycles of reuse, while 52% of the initial enzyme activity could be still maintained after ten cycles of reuse. Finally, the immobilized enzyme was applied in biodiesel conversion and the process was optimized.

     

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