class='kwd-title'>Keywords: Encapsulated enzyme,'/> Efficient utilisation of hydrogel preparations with encapsulated enzymes – a case study on catalase and hydrogen peroxide degradation
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Efficient utilisation of hydrogel preparations with encapsulated enzymes – a case study on catalase and hydrogen peroxide degradation

机译:胶囊化酶有效利用水凝胶制剂–过氧化氢酶和过氧化氢降解的案例研究

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摘要

class="kwd-title">Keywords: Encapsulated enzyme, Thiele modulus, Process efficiency, Catalase, Hydrogen peroxide, Substrate diffusion class="head no_bottom_margin" id="abs0015title">AbstractThe size of the gel preparation, the concentration of the encapsulated enzyme and the ratio of the preparation volume to the volume of the reaction mixture influence the reaction efficiency with encapsulated biocatalysts. A model of first order enzymatic reaction with substrate diffusion is presented and validated by the decomposition reaction of hydrogen peroxide by catalase. The Thiele modulus (Ф) contains the modified (including the enzyme concentration) enzymatic reaction constant (k′). Based on the model analysis, the Thiele modulus should not exceed a value of 2 (optimally less than 0.5). This value can be controlled by appropriate selection of the enzyme concentration inside and the size of the capsule. A lower Ф value gives a flat substrate concentration profile inside the gel capsule and all the enzyme molecules are involved in the reaction. The optimal diameter of the gel capsule with respect to their separation from the reaction mixture is 1–2 mm.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:包封的酶,Thiele模量,工艺效率,过氧化氢酶,过氧化氢,底物扩散 class =“摘要凝胶制剂的大小,包封的酶的浓度以及制剂体积与反应混合物的体积之比会影响包封的生物催化剂的反应效率。提出了具有底物扩散的一级酶促反应模型,并通过过氧化氢通过过氧化氢酶的分解反应进行了验证。 Thiele模量(Ф)包含修改后的(包括酶浓度)酶促反应常数(k')。根据模型分析,Thiele模量不应超过2(最好小于0.5)。该值可通过适当选择内部酶浓度和胶囊大小来控制。较低的Ф值可使凝胶胶囊内部的底物浓度分布平坦,并且所有酶分子均参与反应。相对于它们与反应混合物的分离,胶胶囊的最佳直径为1-2 mm。

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