三相气升式反应器用于活性炭和污泥过滤的流体力学和传质

M. Salehi, Nasrin Hakimghiasi
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引用次数: 2

摘要

生物反应器是指支持生物活性环境的任何制造或工程设备。这类反应器是设计用来处理废水的。研究了三相气升式反应器的体积传质系数和表面气速对流体力学的影响。外气升式反应器的降水管与提升管的截面积比分别为0.14和0.36。空气和水分别作为气相和液相,活性炭/污泥颗粒作为固相。增加表面气速,液体循环速度、气含率和体积传质系数增大;悬浮活性炭颗粒的增加导致活性污泥浓度、降水管截面积比、液速、气含率和体积传质系数的降低。最大气含率为0.178,在气表流速为0.25 (m/s)、活性污泥添加量为1wt . %的外部气升反应器中达到。在含0.00032固持率的外部气升式反应器中,观察到的最大体积传质系数为0.0485 (l/s)。在气速高于0.15 (m/s)和0.18 (m/s)的活性炭气速反应器中,观察到活性污泥气速反应器流动状态的切换。
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Hydrodynamics and mass transfer inthree-phase airlift reactors for activated Carbon and sludge filtration
A bioreactor refers to any manufactured or engineered device that supports a biologically active environment. These kinds of reactors are designed to treat wastewater treatment. Volumetric mass transfer coefficient and the effect of superficial gas velocity, as the most important operational factor on hydrodynamics, in three-phase airlift reactors are investigated in this study. The experiments for the external airlift reactor were carried out at a 0.14 downcomer to riser cross-sectional area ratio, and for the internal reactor at 0.36 and 1. Air and water were used as the gas and liquid phases, respectively, as well as activated carbon/sludge particles as the solid phase. Increasing the superficial gas velocity resulted in greater liquid circulation velocity, gas hold-up, and volumetric mass transfer coefficient; increasing the suspended activated carbon particles resulted in a decreased concentration of activated sludge, downcomer to riser cross sectional area ratio, liquid velocity, gas hold-up and volumetric mass transfer coefficient. The maximum gas hold-up was 0.178 which was attained in the external airlift reactor with a 1 Wt. % of activated sludge at a gas superficial velocity of 0.25 (m/s). The maximum volumetric mass transfer coefficient was 0.0485 (l/s) that was observed in the external airlift reactor containing activated carbon with a 0.00032 solid hold-up. A switch was observed in the activated sludge airlift reactor flow regime at gas velocities higher than 0.15 (m/s) and 0.18 (m/s) in the activated carbon airlift reactors.
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