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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Influence of organic loading and aeration rates on performance of a lab-scale upflow aerated submerged fixed-Mm bioreactor
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Influence of organic loading and aeration rates on performance of a lab-scale upflow aerated submerged fixed-Mm bioreactor

机译:有机负荷和曝气速率对实验室规模的上流曝气固定式Mm生物反应器性能的影响

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The effect of organic loading and aeration rates on the performance of a lab-scale upflow aerated submerged fixed-film bioreactor, packed with polypropylene media, was examined in terms of dissolved oxygen (DO) concentration and chemical oxygen demand (COD) removal efficiency using an experimental design technique for a 6-month operation period. The system could handle the organic loadings of 1-2.5 kgCOD/m~3d with the COD removal efficiency from 74 to 90% regardless of aeration rate for synthetic municipal wastewater. In a low aeration rate of 41/min, increasing organic loadings to the values higher than 2 kgCOD/m~3d resulted in a 16% decrease in the system performance, most likely due to the DO concentration reduction (about 57%). With increasing the aeration rate to 81/min, however, the COD removal and DO values remained constant at about 90% and 5.8 mg/l, respectively, with a slightly decrease to 83% and 4.5 mg/1 for the high loading rate of 2.5 kgCOD/m~3d. The statistical analysis with a 90% confidence interval showed the interaction of main factors on the COD removal is important only when the both main factors of the aeration and loading rates were increased. It is concluded that the system used in the present study could show an acceptable stability and performance during the long-term period particularly at the high airflow rate.
机译:使用溶解氧(DO)浓度和化学需氧量(COD)去除效率,使用以下方法检查了有机负荷和曝气速率对填充聚丙烯介质的实验室规模上流式曝气固定膜生物反应器性能的影响:一种为期6个月的运营期的实验设计技术。该系统可处理1-2.5 kgCOD / m〜3d的有机负荷,而无论合成市政废水的曝气率如何,其COD去除率均可达到74%至90%。在41 / min的低曝气速率下,将有机负荷增加到高于2 kgCOD / m〜3d的值会使系统性能降低16%,这很可能是由于DO浓度降低(约57%)。然而,随着通气量增加至81 / min,COD去除量和DO值分别保持恒定,分别约为90%和5.8 mg / l,而高载气量则分别降低至83%和4.5 mg / 1。 2.5千克COD / m〜3d。置信区间为90%的统计分析表明,只有当通气和负荷率这两个主要因素都增加时,主要因素对COD去除的相互作用才是重要的。结论是,本研究中使用的系统可以在长期内显示出可接受的稳定性和性能,尤其是在高气流速率下。

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