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Synergistic Effect of Two Type Cellulase Immobilized on Chitosan Microparticle as Biocatalyst for Coconut Husk Hydrolysis

机译:两种纤维素酶固定在壳聚糖微粒上的协同作用作为椰子壳水解的生物催化剂

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摘要

The effectivity of employing two types of cellulases from Aspergillus niger and Trichoderma resei covalently immobilized on chitosan microparticle was investigated. Reducing sugar from CMC yielded by immobilized cellulase from T. resei alone and A. niger alone was 0.316 g/L and 0.244 g/L, respectively. Simultaneous use of both cellulases shows a significant increase in reducing sugar produced to 1.020 g/L. The effective combination of this two types of cellulases also occurred when coconut husk was used as the substrate. A very high enzyme coupling of 92.06% compared to free enzyme was obtained in the immobilization. Addition ofGDA not only increased enzyme coupling to 100% but also improved sugar produced. Immobilized cellulase was successfully maintained its activity until 5 cycles.
机译:研究了使用两种纤维素来自曲霉和Trichoderma Resei在壳聚糖微粒上共价固定的两种纤维素酶的有效性。 通过单独的T.Seei的固定化纤维素酶产生来自CMC的降低糖,仅为A.Niger分别为0.316g / L和0.244g / L. 同时使用两种纤维素酶显示出产生至1.020克/升的还原糖的显着增加。 当使用椰子壳用作基质时,也发生了这两种纤维素酶的有效组合。 在固定化中获得了与游离酶相比的非常高的酶偶联92.06%。 添加的ocgda不仅增加了酶偶联至100%,还增加了改进的糖。 固定化纤维素酶直到5个循环成功地保持活性。

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