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机械搅拌酶膜反应器中固定化 HRP 的 Tau-SiO@FeO-GO 纳米复合材料用于去除合成废水中的四环素。

Mechanically stirred enzymatic membrane reactor containing HRP immobilized on Tau-SiO@FeO-GO nanocomposite for removal of tetracycline in synthetically concocted wastewater.

机构信息

Institute of Biochemistry and Biophysics, University of Tehran, Tehran, Iran.

Petrochemical Industries Development Management Company (PIDMCO), P.O. Box 15858-49568, Tehran, Iran.

出版信息

Biodegradation. 2024 Jul;35(4):407-422. doi: 10.1007/s10532-023-10066-x. Epub 2024 Jan 23.

DOI:10.1007/s10532-023-10066-x
PMID:38261084
Abstract

The process of mechanically stirred membrane reactor containing the suspension of horseradish peroxidase (HRP) immobilized on synthesized nanocomposite (Tau-SiO@FeO-GO) was designed for continuous degradation of tetracycline. The immobilized HRP was characterized in terms of kinetic parameters and catalytic activities as these parameters were improved highly through immobilization. The stability indices including pH and temperature were investigated in parallel. The immobilized HRP was more tolerable to pH changes as compared to free HRP and the optimum temperature obtained at 40 °C. The reusability of HRP was promoted by immobilization as far as 70% of initial activity after ten cycles. The enzymatic degradation of optimum concentration of tetracycline was carried out in batch condition and 100% of tetracycline removed after 30 min. The results also showed that higher concentration of HO exhibited more oxidation of tetracycline. The optimal ratio of HRP/HO was also obtained at 0.005. The simultaneous process including separation and the biocatalytic degradation established in the membrane stirrer reactor concluded that no amount of tetracycline was observed in the permeate stream coming from the membrane after 30 min of operation.

摘要

设计了一种含有固定化辣根过氧化物酶(HRP)的悬浮液的机械搅拌膜反应器(Tau-SiO@FeO-GO),用于连续降解四环素。从动力学参数和催化活性方面对固定化 HRP 进行了表征,这些参数通过固定化得到了极大的提高。同时还研究了稳定性指数,包括 pH 值和温度。与游离 HRP 相比,固定化 HRP 对 pH 值变化的耐受性更高,最佳温度在 40°C 时获得。固定化促进了 HRP 的可重复使用性,经过十次循环后,仍保持初始活性的 70%。在批处理条件下,对最佳浓度的四环素进行酶促降解,30 分钟后即可去除 100%的四环素。结果还表明,HO 的浓度越高,对四环素的氧化作用越强。HRP/HO 的最佳比例也在 0.005 时获得。在膜搅拌反应器中建立了同时包括分离和生物催化降解的连续过程,操作 30 分钟后,从膜中流出的渗透物中没有检测到四环素。

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