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Dynamical systems and phase plane analysis of protease-clay interactions

机译:蛋白酶-粘土相互作用的动力学系统和相平面分析

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摘要

Protease, a common extracellular enzyme in soils, was adsorbed onto smectite and bentonite clays exchanged with both Na and Ca cations. Initial concentrations and residual activity of the enzyme were studied together with a new approach to adsorption modeling and an introduction to the technique of phase plane analysis. Protease adsorption reached a maximum level of 0.34 mg mg(-1) on the Na-exchanged smectite and a minimum of 0.20 mg mg(-1) on the Ca-exchanged bentonite. The inhibition study of protease activity within the clay matrix showed that the enzyme retained a maximum of 9.9% (Na-exchanged smectite) and a minimum of 0% (Ca-exchanged bentonite) of its original activity. As opposed to the classic Langmuir and Freundlich model description, a general form, the Langmuir-Freundlich isotherm in combination with phase plane analysis, was used. The model appeared to agree well with the adsorption data of all four of the enzyme/clay complexes. The use of phase plane analysis was shown to be a powerful tool in equilibrium and kinetic sorption relationships. Kinetic modeling was able to identify problems with our isotherms for higher initial concentrations of protease. For all initial concentrations, film diffusion effects contribute to limiting the overall rate of adsorption. [References: 28]
机译:蛋白酶是土壤中一种常见的细胞外酶,被吸附在绿土和膨润土上,并与Na和Ca阳离子交换。研究了酶的初始浓度和残余活性,以及​​吸附建模的新方法和相平面分析技术的介绍。钠交换蒙脱石上的蛋白酶吸附量最高为0.34 mg mg(-1),而钙交换膨润土上的吸附量最低为0.20 mg mg(-1)。对粘土基质中蛋白酶活性的抑制研究表明,该酶保留其原始活性的最大值为9.9%(Na交换的蒙脱石),最小值为0%(Ca交换的膨润土)。与经典的Langmuir和Freundlich模型描述相反,使用通用形式Langmuir-Freundlich等温线结合相平面分析。该模型似乎与所有四种酶/粘土复合物的吸附数据非常吻合。已证明使用相平面分析是平衡和动力学吸附关系的有力工具。动力学模型能够确定等温线存在较高蛋白酶初始浓度的问题。对于所有初始浓度,薄膜扩散效应都会限制整体吸附速率。 [参考:28]

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