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From inulin to fructose syrups using sol-gel immobilized inulinase

机译:使用溶胶-凝胶固定的菊粉酶从菊粉到果糖糖浆

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The present work aims to provide the basic characterization of sol-gel immobilized inulinase, a biocatalyst configuration yet unexploited, using as model system the hydrolysis of inulin to fructose. Porous xerogel particles with dimensions in slight excess of 10 μm were obtained, yielding an immobilization efficiency of roughly 80%. The temperature- and pH- activity profiles displayed a broader bell-shaped pattern as a result of immobilization. In the latter case, a shift of the optimal pH of 0.5 pH units was observed towards a less acidic environment. The kinetic parameters estimated from the typical Michaelis-Menten kinetics suggest that immobilization in sol-gel did not tamper with the native enzyme conformation, but on the other hand, entrapment brought along mass transfer limitations. The sol-gel biocatalyst displayed a promising operational stability, since it was used in more than 20 consecutive 24- hour batch runs without noticeable decay in product yield. The performance of sol-gel biocatalyst particles doped with magnetite roughly matched the performance of simple sol-gel particles in a single batch run. However, the operational stability of the former proved poorer, since activity decay was evident after four consecutive 24-hour batch runs.
机译:本工作旨在通过将菊粉水解为果糖作为模型系统,提供溶胶-凝胶固定的菊粉酶的基本特性(一种尚未开发的生物催化剂结构)。获得尺寸略微超过10μm的多孔干凝胶颗粒,产生约80%的固定效率。由于固定,温度和pH活性曲线显示出更宽的钟形图案。在后一种情况下,观察到最佳pH为0.5 pH单位向酸性较低的环境转移。由典型的Michaelis-Menten动力学估算的动力学参数表明,溶胶-凝胶中的固定化不会篡改天然酶的构象,但另一方面,截留却带来了传质限制​​。溶胶-凝胶生物催化剂显示出令人鼓舞的操作稳定性,因为它连续20多个批次连续使用了24小时,而产品收率却没有明显下降。掺有磁铁矿的溶胶-凝胶生物催化剂颗粒的性能在单批运行中大致与简单的溶胶-凝胶颗粒的性能相当。但是,事实证明前者的操作稳定性较差,因为连续四个24小时分批运行后活性明显下降。

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