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Two-phase reactors applied to the removal of substituted phenols: comparison between liquid-liquid and liquid-solid systems.

机译:用于去除取代酚的两相反应器:液-液和液-固系统之间的比较。

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摘要

In this paper, a comparison is provided between liquid-liquid and liquid-solid partitioning systems applied to the removal of high concentrations of 4-nitrophenol. The target compound is a typical representative of substituted phenols found in many industrial effluents while the biomass was a mixed culture operating as a conventional Sequencing Batch Reactor and acclimatized to 4-nitrophenol as the sole carbon source. Both two-phase systems showed enhanced performance relative to the conventional single phase bioreactor and may be suitable for industrial application. The best results were obtained with the polymer Hytrel which is characterized by higher partition capability in comparison to the immiscible liquid solvent (2-undecanone) and to the polymer Tone?. A model of the two systems was formulated and applied to evaluate the relative magnitudes of the reaction, mass transfer and diffusion characteristic times. Kinetic parameters for the Haldane equation, diffusivity and mass transfer coefficients have been evaluated by data fitting of batch tests for liquid-liquid and liquid-solid two phase systems. Finally, preliminary results showed the feasibility of polymer regeneration to facilitate polymer reuse by an extended contact time with the biomass.
机译:在本文中,对用于去除高浓度的4-硝基苯酚的液-液和液-固分配系统进行了比较。目标化合物是在许多工业废水中发现的取代酚的典型代表,而生物质是作为常规测序间歇反应器运行的混合培养物,并已适应于以4-硝基苯酚作为唯一碳源。相对于常规单相生物反应器,两个两相系统均显示出增强的性能,并且可能适合工业应用。用聚合物Hytrel可获得最好的结果,与不混溶的液体溶剂(2-十一碳烷酮)和聚合物Tone?相比,它具有更高的分配能力。建立了两个系统的模型,并将其用于评估反应的相对量,传质和扩散特征时间。通过分批测试液-液和液-固两相系统的数据拟合,对Haldane方程的动力学参数,扩散系数和传质系数进行了评估。最后,初步结果表明,通过延长与生物质的接触时间,聚合物再生有助于聚合物再利用的可行性。

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