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Application of immobilized horseradish peroxidase for the removal of p-chlorophenol from aqueous solution

机译:固定化辣根过氧化物酶在去除水溶液中对氯苯酚中的应用

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The development and application of an immobilized horseradish peroxidase (HRP) system with porous aminopropyl glass (APG) beads are reported. The optimal condition for the immobilization of HRP on APG with glutaraladhyde, which leads to a specific activity of 50.7 U/g APG, was identified. Upon immobilization, the operation pH range was broadened downward by one pH unit from 7.5-9.5 to 6.5-9.5 and optimal operation temperature was increased by at least 10℃. Thermostability of HRP was also improved by approximately 20% upon immobilization. The application of such HRP immobilized APG for the removal of p-chlorophenol from water was investigated. An HPLC method for the quantification of p-chlorophenol was developed to substitute for spectrophotometric methods that are subject to interferences from proteins and other UV-absrobing compounds in the reaction mixtures. The polymerization of p-chlorophenol into insoluble precipitate was completed within 3 h after the initiation of reaction with the addition of hydrogen peroxide with a maximal removal efficiency of 25%, observed at pH 7.5. The addition of poly(ethylene glycol) significantly enhanced the removal efficiency presumably via the formation of a protective shield in the vicinity of the active site of HRP from the free radicals formed during polymerization and can thus reduce the amount of enzymes needed to achieve the desired removal efficiency. The reusability of the HRP immobilized APG was also demonstrated.
机译:报道了具有多孔氨基丙基玻璃(APG)珠的固定化辣根过氧化物酶(HRP)系统的开发和应用。确定了戊二醛将HRP固定在APG上的最佳条件,该条件可导致50.7 U / g APG的比活性。固定后,操作pH范围从7.5-9.5向下扩展一个pH单位至6.5-9.5,最佳操作温度至少升高10℃。固定后,HRP的热稳定性也提高了约20%。研究了这种HRP固定的APG在去除水中对氯苯酚中的应用。开发了一种用于对氯苯酚定量的HPLC方法,以替代分光光度法,该方法容易受到反应混合物中蛋白质和其他吸收紫外线的化合物的干扰。对氯苯酚聚合成不溶性沉淀物的反应在反应开始后的3小时内完成,加入过氧化氢的最大去除效率为25%(在pH 7.5时观察到)。聚乙二醇的加入可以显着提高去除效率,大概是通过在HRP活性位点附近形成保护层来防止聚合过程中形成的自由基的去除,因此可以减少实现所需目标所需的酶量。去除效率。还证明了固定HRP的APG的可重用性。

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