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Effect of mixing mode on the behavior of an ASBBR with immobilized biomass in the treatment of cheese whey

机译:混合方式对固定化生物质ASBBR处理干酪乳清的行为的影响

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A hydrodynamic study of a mechanically stirred anaerobic sequencing batch biofilm reactor (ASBBR) containing immobilized biomass on polyurethane foam was performed with the aim to determine homogeneity of the reactor based on total mixing time. Turbine or helix propellers were used for stirring at rotor speeds of 100, 200, 300 and 500 rpm. Experimental values obtained were fitted to a Boltzmann sigmoid. Homogenization times of the reactor were negligible when compared to the 8-h cycle time for all conditions studied. At low propeller rotations the turbine propeller showed the best performance. For higher rotations total mixing times were similar for both propellers; however the helix propeller had better homogeneity conditions. At a subsequent stage the system was operated in batch mode treating cheese whey at concentrations of 500, 1000 and 2000 mgCOD/L and rotations of 200, 300 and 500 rpm. In these assays the importance of the propeller became evident not only for mixing, but also for substrate flow across the bed containing immobilized biomass. Due to axial flow, the helix propeller offered better mass transfer conditions, evidenced by improved organic matter conversion and lower production of total volatile acids.
机译:进行了机械搅拌的厌氧测序批生物膜反应器(ASBBR)的流体力学研究,该反应器在聚氨酯泡沫上包含固定化的生物质,目的是根据总混合时间确定反应器的均匀性。涡轮或螺旋桨用于以100、200、300和500 rpm的转子速度进行搅拌。将获得的实验值拟合到玻耳兹曼乙状结肠。与所有研究条件下的8小时循环时间相比,反应器的均质时间可以忽略不计。在低螺旋桨转速下,涡轮螺旋桨表现出最佳性能。对于更高的旋转,两个螺旋桨的总混合时间相似。但是,螺旋桨具有更好的均匀性条件。在随后的阶段,该系统以批处理模式运行,以500、1000和2000 mgCOD / L的浓度处理干酪乳清,并以200、300和500 rpm的转速旋转。在这些试验中,螺旋桨的重要性不仅对于混合而且对于穿过固定化生物质的床的底物流都变得显而易见。由于轴向流动,螺旋桨提供了更好的传质条件,有机物转化率提高和总挥发性酸生成量降低证明了这一点。

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