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Utilization of spent coffee grounds for isolation and stabilization of Paenibacillus chitinolyticus CKS1 cellulase by immobilization

机译:利用废咖啡渣通过固定化分离和稳定解热潘氏芽孢杆菌CKS1纤维素酶

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摘要

This study has explored the feasibility of using spent coffee grounds as a good supporting material for the Paenibacillus chitinolyticus CKS1 cellulase immobilization. An optimal operational conditions in a batch-adsorption system were found to be: carrier mass of 12 g/L, under the temperature of 45 °C and no pH adjustments. The immobilization yield reached about 71%. An equilibrium establishment between the cellulase and the carrier surface occurred within 45 min, whereas the process kinetics may be predicted by the pseudo-second-order model. An immobilized cellulase preparation expressed very good avicelase activity, this reached up to 2.67 U/g, and revealed an improved storage stability property, compared to free enzyme sample counterpart. The addition of metal ions, such as K+ and Mg2+ did not affect positively immobilization yield results, but on the contrary, contributed to an improved bio-activities of the immobilized cellulase, thus may be employed before each enzyme application. The method developed in this study offers a cheap and effective alternative for immediate enzyme isolation from the production medium and its stabilization, compared to other carriers used for the immobilization.
机译:这项研究探索了使用废咖啡渣作为解壳芽孢杆菌CKS1纤维素酶固定化的良好支持材料的可行性。发现在分批吸附系统中的最佳操作条件是:在45°C的温度下且无pH调节的情况下,载体质量为12 g / L。固定化产率达到约71%。纤维素酶和载体表面之间的平衡建立在45分钟内发生,而过程动力学可以通过拟二级模型预测。与游离酶样品对应物相比,固定化纤维素酶制剂表现出非常好的抗氧化酶活性,达到了2.67 U / g,并显示出改善的储存稳定性。添加金属离子(例如K + 和Mg 2 + )不会对固定化产率产生积极影响,但相反地,有助于提高植物的生物活性。因此,可以在每种酶应用之前使用固定化的纤维素酶。与用于固定化的其他载体相比,该研究中开发的方法为从生产培养基中立即分离酶及其稳定化提供了一种廉价有效的替代方法。

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