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首页> 外文期刊>Applied Microbiology and Biotechnology >Novel application of magnetic nano-carbon composite as redox mediator in the reductive biodegradation of iopromide in anaerobic continuous systems
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Novel application of magnetic nano-carbon composite as redox mediator in the reductive biodegradation of iopromide in anaerobic continuous systems

机译:磁性纳米碳复合物作为氧化还原介质在厌氧连续系统中碘化物的还原生物降解中的新建

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摘要

The redox-mediating capacity of magnetic reduced graphene oxide nanosacks (MNS) to promote the reductive biodegradation of the halogenated pollutant, iopromide (IOP), was tested. Experiments were performed using glucose as electron donor in an upflow anaerobic sludge blanket (UASB) reactor under methanogenic conditions. Higher removal efficiency of IOP in the UASB reactor supplied with MNS as redox mediator was observed as compared with the control reactor lacking MNS. Results showed 82% of IOP removal efficiency under steady state conditions in the UASB reactor enriched with MNS, while the reactor control showed IOP removal efficiency of 51%. The precise microbial transformation pathway of IOP was elucidated by high-performance liquid chromatography coupled to mass spectroscopy (HPLC-MS) analysis. Biotransformation by-products with lower molecular weight than IOP molecule were identified in the reactor supplied with MNS, which were not detected in the reactor control, indicating the contribution of these magnetic nano-carbon composites in the redox conversion of this halogenated pollutant. Reductive reactions of IOP favored by MNS led to complete dehalogenation of the benzene ring and partial rupture of side chains of this pollutant, which is the first step towards its complete biodegradation. Possible reductive mechanisms that took place in the biodegradation of IOP were stated. Finally, the novel and successful application of magnetic graphene composites in a continuous bioreactor to enhance the microbial transformation of IOP was demonstrated.
机译:测试了磁性还原石墨烯氧化物纳米烷纳链(MNS)的氧化还原介导容量,以促进卤化污染物,碘化物(IOP)的还原生物降解。使用葡萄糖作为电子供体在上流厌氧污泥毯(UASB)反应器下进行实验,在甲烷的条件下。与缺少MNS的对抗反应器相比,观察到用MNS提供的UASB反应器中的uASB反应器中的IOP的更高的去除效率。结果显示富含MNS的UASB反应器中的稳态条件下IOP去除效率的82%,而反应器控制显示IOP去除效率为51%。通过高性能液相色谱法耦合到质谱(HPLC-MS)分析,阐明了IOP的精确微生物转化途径。在供应的MNS提供的反应器中鉴定了比IOP分子低于IOP分子的生物转化副产物,其在反应器控制中未检测到,表明这些磁性纳米碳复合材料在该卤代污染物的氧化还原转化率中的贡献。 MNS青睐的IOP的还原反应导致该污染物的苯环和部分破裂的脱卤,这是其完全生物降解的第一步。陈述了在IOP生物降解中发生的可能还原机制。最后,对连续生物反应器中的磁性石墨烯复合材料进行了新颖和成功应用以增强IOP的微生物转化。

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