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Hydrodynamic and kinetic assessment of an anaerobic fixed-bed reactor for slaughterhouse wastewater treatment

机译:厌氧固定床反应器处理屠宰场废水的水动力和动力学评估

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摘要

The research study hereby is aimed at the characterization of the hydrodynamics and kinetics of an upflow anaerobic fixed-bed reactor used in the secondary treatment of slaughterhouse wastewater. Hydrodynamics was determined by means of impulse tracer trials and by calculating residence time distribution curves at different volumetric flow rates. At high flow rates (110-204 mL/min), the reactor showed a plug flow behavior with axial dispersion and interactions with dead zones; nonetheless, at low volumetric flow rates (2.29-27-90 mL/min), the dispersion and interaction with dead zones increased, and short circuits appeared behaving as a stirred reactor. In this study, the hydrodynamics and kinetics results were combined with flow pattern description models (stirred tank, plug flow, stirred tank reactors in series and dispersion models) in order to assess organic matter removal efficiency as chemical oxygen demand at the anaerobic reactor. The comparison of the first-order kinetic constants obtained experimentally and the kinetics constants from the models allowed the obtaining of the anaerobic reactor's hydrodynamics and kinetic characterization. Optimal operating conditions and design parameters such as average residence time and efficiency, by taking into account reactor and wastewater characteristics were determined.
机译:因此,本研究旨在表征用于屠宰场废水二级处理的上流厌氧固定床反应器的流体动力学和动力学特性。通过脉冲示踪试验并通过计算不同体积流量下的停留时间分布曲线来确定流体力学。在高流速(110-204 mL / min)下,反应器显示出具有轴向分散性和与死区的相互作用的活塞流行为。然而,在低体积流量(2.29-27-90 mL / min)下,分散和与死区的相互作用增加,并且在搅拌反应器中出现短路。在这项研究中,将流体动力学和动力学结果与流动模式描述模型(搅拌釜,活塞流,串联搅拌釜反应器和分散模型)结合起来,以评估有机物去除效率,作为厌氧反应器中化学需氧量。通过实验获得的一级动力学常数与模型的动力学常数的比较,可以得到厌氧反应器的流体力学和动力学特性。通过考虑反应器和废水的特性,确定了最佳操作条件和设计参数,例如平均停留时间和效率。

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