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Catalytic Oxidation of Phenol and 24-Dichlorophenol by Using Horseradish Peroxidase Immobilized on Graphene Oxide/Fe3O4

机译:固定在氧化石墨烯/ Fe3O4上的辣根过氧化物酶催化氧化苯酚和24-二氯苯酚

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摘要

Graphene oxide/Fe3O4 (GO/Fe3O4) nanoparticles were synthesized by an ultrasonic-assisted reverse co-precipitation method, and then horseradish peroxidase (HRP) was covalently immobilized onto GO/Fe3O4 with 1-ethyl-3-(3-dimethyaminopropyl)carbodiimide (EDC) as a cross-linking agent. In order to enhance the phenol removal efficiency and prevent the inactivation of the enzyme, the polyethylene glycol with highly hydrophilicity was added in this reaction, because the adsorption capacity for the polymer by degradation was stronger than the HRP. The results showed that the immobilized enzyme removed over 95% of phenol from aqueous solution. The catalytic condition was extensively optimized among the range of pH, mass ratio of PEG/phenol as well as initial concentration of immobilized enzyme and H2O2. The HRP immobilized on GO/Fe3O4 composite could be easily separated under a magnetic field from the reaction solution and reused.
机译:通过超声辅助逆共沉淀法合成氧化石墨烯/ Fe3O4(GO / Fe3O4)纳米粒子,然后将辣根过氧化物酶(HRP)与1-乙基-3-(3-二甲基氨基丙基)碳二亚胺共价固定在GO / Fe3O4上。 (EDC)作为交联剂。为了提高去除苯酚的效率并防止酶的失活,在该反应中添加了具有高亲水性的聚乙二醇,因为通过降解对聚合物的吸附能力强于HRP。结果表明,固定化酶从水溶液中去除了95%以上的苯酚。在pH,PEG /苯酚质量比以及固定化酶和H2O2的初始浓度范围内,对催化条件进行了广泛优化。固定在GO / Fe3O4复合材料上的HRP可以很容易地在磁场下从反应溶液中分离出来并重复使用。

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