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Effects of solid-phase mass transfer on the performance of a stirred anaerobic sequencing batch reactor containing immobilized biomass

机译:固相传质对固定化生物质搅拌厌氧测序间歇反应器性能的影响

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This work reports on experiments for an anaerobic sequencing batch reactor containing immobilized biomass which aimed at verifying the effects of solid-phase mass transfer on the reactor's overall performance. Four experiments were carried out at 30 degrees C with cubic polyurethane foam particles previously inoculated with anaerobic biomass. Different solid-phase mass transfer conditions were reached in each experiment by varying the size of the bioparticle from 0.5 to 3.0 cm. The reactor was fed with a low-strength synthetic wastewater containing protein, carbohydrates and lipid and the effects of mass transfer were evaluated through dynamic substrate concentration profiles during 8-hour batch cycles. A modified first-order kinetic model provided a good representation of the behavior of the dynamic concentration profiles. The solid-phase mass transfer was found to slightly affect the concentration of effluent organic matter expressed as chemical oxygen demand (COD). The concentration of residual effluent substrate increased as the size of the bioparticle was increased. The cycle time was not affected as the size of the bioparticle was increased from 0.5 to 2.0 cm. However, it was found that the cycle time in a reactor with 3.0-cm cubic particles should be higher than that required in systems with smaller particles. The apparent first-order kinetic parameter was estimated as 0.59 +/- 0.01 h(-1) for experiments with bioparticle sizes ranging from 0.5 to 2.0 cm, while a value of 0.48 h(-1) was obtained in the experiment with 3.0-cm bioparticles. (c) 2006 Elsevier Ltd. All rights reserved.
机译:这项工作报告了一个厌氧测序间歇反应器的实验,该反应器包含固定化的生物质,旨在验证固相传质对反应器整体性能的影响。在30摄氏度下对立方聚氨酯泡沫塑料颗粒进行了四个实验,这些颗粒事先已接种厌氧生物质。在每个实验中,通过将生物颗粒的大小从0.5 cm更改为3.0 cm,可以达到不同的固相传质条件。向反应器中喂入低强度合成废水,其中包含蛋白质,碳水化合物和脂质,并通过动态底物浓度曲线在8小时的批处理周期中评估了传质的影响。修改后的一阶动力学模型很好地表示了动态浓度分布的行为。发现固相传质稍微影响了以化学需氧量(COD)表示的废水有机物的浓度。随着生物颗粒尺寸的增加,残留流出物底物的浓度增加。由于生物颗粒的大小从0.5厘米增加到2.0厘米,因此循环时间不受影响。然而,发现在具有3.0cm立方颗粒的反应器中的循环时间应该比具有较小颗粒的系统中的循环时间更长。对于生物粒子尺寸为0.5至2.0 cm的实验,表观一级动力学参数估计为0.59 +/- 0.01 h(-1),而在3.0-实验中,获得的值为0.48 h(-1)。厘米的生物颗粒。 (c)2006 Elsevier Ltd.保留所有权利。

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