Co-Immobilization of Multi-Enzyme Cascade System into the Metal-Organic Frameworks (MOFs)for the Removal of Microcontaminants and Process Equipment Layout, M.Sc. Thesis Sharif University of Technology ; Farhadi, Fatolla (Supervisor) ; Yaghmaei, Soheila (Supervisor) ; Ghobadiejad, Zahra (Co-Supervisor)
Abstract
In recent years, the biodegradation of micro-contaminants using enzymes has attracted the attention of many researchers in the field of environment and health. Micro- and nano-scale environments play an important role in enzymatic catalysis that directly affects the activity and stability of enzymes. Therefore, setting a nanoscale environment for enzymes is very important, especially in liquids with undesirable properties (such as pH, temperature, toxicity, etc.) in this work, a method proposed in which the pH and the substrate concentration are regulated for enzymatic catalysis using a metal-organic framework, consisting of Glucose Oxidase (GOx) and Horseradish Peroxidase (HRP) immobilized...
Cataloging briefCo-Immobilization of Multi-Enzyme Cascade System into the Metal-Organic Frameworks (MOFs)for the Removal of Microcontaminants and Process Equipment Layout, M.Sc. Thesis Sharif University of Technology ; Farhadi, Fatolla (Supervisor) ; Yaghmaei, Soheila (Supervisor) ; Ghobadiejad, Zahra (Co-Supervisor)
Abstract
In recent years, the biodegradation of micro-contaminants using enzymes has attracted the attention of many researchers in the field of environment and health. Micro- and nano-scale environments play an important role in enzymatic catalysis that directly affects the activity and stability of enzymes. Therefore, setting a nanoscale environment for enzymes is very important, especially in liquids with undesirable properties (such as pH, temperature, toxicity, etc.) in this work, a method proposed in which the pH and the substrate concentration are regulated for enzymatic catalysis using a metal-organic framework, consisting of Glucose Oxidase (GOx) and Horseradish Peroxidase (HRP) immobilized...
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