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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Continuous Removal of Nonylphenol by Versatile Peroxidase in a Two-Stage Membrane Bioreactor
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Continuous Removal of Nonylphenol by Versatile Peroxidase in a Two-Stage Membrane Bioreactor

机译:在两阶段膜生物反应器中通过通用过氧化物酶连续去除壬基酚

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摘要

The ligninolytic enzymes versatile peroxidase (VP) and manganese peroxidase (MnP) have been previously described as efficient oxidizers of the endocrine disrupting chemical (EDC) nonylphenol at high concentrations of the pollutant. Envisaging the application of an enzymatic technology as a tertiary treatment in wastewater treatment plants, it is important to design a continuous reactor that performs the efficient removal of nonylphenol under environmental conditions. In the present research, a two-stage membrane bioreactor based on the production and use of Mn3+-malonate (chemical oxidant) was applied. The bioreactor consisted of an enzymatic reactor (R1) for the production of Mn3+-malonate by VP, coupled to an oxidation reactor (R2), where the oxidation of nonylphenol by Mn3+-malonate took place. The production of Mn3+-malonate in R1 was maintained constant: 500-700 mu M with minimal deactivation of the enzyme. The oxidation reactor attained nearly complete removal of nonylphenol, even at a hydraulic retention time (HRT) shorter than 20 min. The operation with real wastewater containing nonylphenol at environmental concentrations (454 nM) was also successful, with a nonylphenol removal of 99.5 % at a rate of 0.73 mu M h(-1). Moreover, when the HRT of R2 was sharply reduced to 6.8 and 3.6 min, the removal of nonylphenol was maintained beyond 99 %, which proves the feasibility of the system to remove the target compound present in a real effluent, even at very short HRTs.
机译:木质素分解酶通用过氧化物酶(VP)和锰过氧化物酶(MnP)先前已被描述为高浓度污染物下内分泌干扰化学物质(EDC)壬基酚的有效氧化剂。考虑到酶技术在废水处理厂中作为三级处理的应用,重要的是设计一种连续反应器,该反应器可在环境条件下有效去除壬基酚。在本研究中,应用了基于Mn3 +-丙二酸酯(化学氧化剂)的生产和使用的两级膜生物反应器。生物反应器由用于通过VP生产Mn3 +-丙二酸的酶反应器(R1)和氧化反应器(R2)组成,在该反应器中通过Mn3 +-丙二酸进行壬基酚的氧化。 R1中Mn3 +-丙二酸的产量保持恒定:500-700μM,酶的失活程度最小。即使在少于20分钟的水力停留时间(HRT)下,氧化反应器也能几乎完全去除壬基酚。使用含壬基酚的实际废水在环境浓度(454 nM)下的实际废水也成功运行,以0.73μM h(-1)的速率去除了99.5%的壬基酚。此外,当R2的HRT急剧降低至6.8和3.6 min时,壬基酚的去除率保持在99%以上,这证明了该系统即使在很短的HRT上也能去除实际流出物中存在的目标化合物的可行性。

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