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Microbial acetate oxidation in horizontal rotating tubular bioreactor

机译:水平旋转管式生物反应器中微生物乙酸盐的氧化

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The aim of this work was to investigate the possibility of conducting a continuous aerobic bioprocess in a horizontal rotating tubular bioreactor (HRTB). Aerobic oxidation of acetate by the action of a mixed microbial culture was chosen as a model process. The microbial culture was not only grown in a suspension but also in the form of a biofilm on the interior surface of HRTB. Efficiency of the bioprocess was monitored by determination of the acetate concentration and chemical oxygen demand (COD). While acetate inlet concentration and feeding rate influenced efficiency of acetate oxidation, the bioreactor rotation speed did not influence the bioprocess dynamics significantly. Gradients of acetate concentration and pH along HRTB were more pronounced at lower feeding rates. Volumetric load of acetate was proved to be the most significant parameter. High volumetric loads (above 2 acetate l(-1) h(-1)) gave poor acetate oxidation efficiency (only 17 to 50%). When the volumetric load was in the range of 0.60-1.75 g acetate l(-1) h-(1), acetate oxidation efficiency was 50-75%. At lower volumetric loads (0.14-0.58 acetate l(-1) h(-1)), complete acetate consumption was achieved. On the basis of the obtained results, it can be concluded that HRTB is suitable for conducting aerobic continuous bioprocesses.
机译:这项工作的目的是研究在水平旋转管状生物反应器(HRTB)中进行连续好氧生物过程的可能性。通过混合微生物培养的作用将乙酸的需氧氧化作为模型过程。微生物培养物不仅在悬浮液中生长,而且在HRTB的内表面上以生物膜的形式生长。通过确定乙酸盐浓度和化学需氧量(COD)来监测生物过程的效率。尽管乙酸盐入口浓度和进料速度影响乙酸盐氧化效率,但生物反应器的旋转速度并未显着影响生物过程动力学。在较低的进料速度下,沿HRTB的乙酸盐浓度和pH梯度更明显。乙酸盐的体积负荷被证明是最重要的参数。高体积负荷(高于2个乙酸盐l(-1)h(-1))使乙酸盐氧化效率很低(仅17%至50%)。当体积负荷在0.60-1.75g乙酸盐l(-1)h-(1)的范围内时,乙酸盐氧化效率为50-75%。在较低的体积负荷下(0.14-0.58醋酸盐l(-1)h(-1)),可以完全消耗醋酸盐。根据获得的结果,可以得出结论,HRTB适合进行有氧连续生物过程。

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