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Immobilization of horseradish peroxidase on polyglycerol-functionalized magnetic Fe3O4/nanodiamond nanocomposites and its application in phenol biodegradation

机译:对聚甘油官能化磁性Fe3O4 /纳米二胺纳米复合材料的固定化辣根过氧化物酶及其在苯酚生物降解中的应用

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摘要

In this study, Fe3O4/nanodiamond nanocomposites (MND) were synthesized by polyglycerol-mediated covalent bonding. The horseradish peroxidase (HRP) was successfully immobilized on PG layer of MND by interaction between functional groups of MND and HRP, where the HRP molecules became tridimensionally connected outside the MND. The physicochemical properties of MND were analyzed by X-ray diffraction, transmission electron microscopy, X-ray photoelectron spectroscopy measurements, vibrating sample magnetometer, Fourier transform infrared spectroscopy and zeta potential. The optimal conditions for the immobilization of HRP by MND are 7 mg/L, 35 degrees C and 3 h, respectively. Then, the effects of temperature, pH and storage time on the activity of immobilized enzyme and free enzyme were studied. The results showed that the relative activities of immobilized enzymes were higher than free enzymes at different temperatures, pH and storage time. In addition, the reusability experiments of immobilized enzymes showed that after six cycles, the immobilized HRP retained a relative activity of 75%. Applied to the removal of phenol, the effects of phenol concentration, H2O2/phenol molar concentration, immobilized HRP concentration and temperature on phenol removal were investigated. The results displayed that the removal efficiency of phenol reached a maximum when the phenol concentration was 75 mg/L, the ratio of H2O2 to phenol was 1, the immobilized HRP concentration was 0.25 mg/L and the temperature was 30 degrees C. The above results indicate that the immobilized HRP exhibits high removal efficiency and has great potential for removing phenol.
机译:在该研究中,通过聚甘油介导的共价键合合成Fe 3 O 4 /纳米胺纳米复合材料(MND)。通过MND和HRP的官能团之间的相互作用在MND之间的相互作用成功地固定了辣根过氧化物酶(HRP),其中HRP分子在MND外部呈趋势连接。通过X射线衍射,透射电子显微镜,X射线光电子能谱测量,振动样品仪,傅里叶变换红外光谱和Zeta电位分析MND的物理化学性质。通过MND固定HRP的最佳条件分别为7mg / L,35℃和3小时。然后,研究了温度,pH和储存时间对固定化酶和游离酶活性的影响。结果表明,固定化酶的相对活性高于不同温度,pH和储存时间的游离酶。此外,固定化酶的可重复使用性实验表明,在六个循环后,固定的HRP保留了75%的相对活性。研究了去除苯酚,研究了苯酚浓度,H 2 O 2 /酚摩尔浓度,固定化的HRP浓度和温度对苯酚去除的影响。结果显示,当苯酚浓度为75mg / L时,苯酚的去除效率达到最大值,将H 2 O 2与苯酚的比例为1,固定化的HRP浓度为0.25mg / L,温度为30℃。上述结果表明,固定的HRP表现出高的去除效率,并且具有较大的去除苯酚的潜力。

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