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Energy, cost and design aspects of coarse- and fine-bubble aeration systems in the MBBR IFAS process

机译:MBBR IFAS过程中粗泡曝气系统的能量,成本和设计方面

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With the MBBR IFAS (moving bed biofilm reactor integrated fixed-film activated sludge) process, the biomass required for biological wastewater treatment is either suspended or fixed on free-moving plastic carriers in the reactor. Coarse-or fine-bubble aeration systems are used in the MBBR IFAS process. In this study, the oxygen transfer efficiency (OTE) of a coarse-bubble aeration system was improved significantly by the addition of the investigated carriers, even in-process (similar to 1% per vol-% of added carrier material). In a fine-bubble aeration system, the carriers had little or no effect on OTE. The effect of carriers on OTE strongly depends on the properties of the aeration system, the volumetric filling rate of the carriers, the properties of the carrier media, and the reactor geometry. This study shows that the effect of carriers on OTE is less pronounced in-process compared to clean water conditions. When designing new carriers in order to improve their effect on OTE further, suppliers should take this into account. Although the energy efficiency and cost effectiveness of coarse-bubble aeration systems can be improved significantly by the addition of carriers, fine-bubble aeration systems remain the more efficient and cost-effective alternative for aeration when applying the investigated MBBR IFAS process.
机译:利用MBBR IFAS(移动床生物膜反应器集成的固定膜活性污泥)工艺,生物废水处理所需的生物质悬浮或固定在反应器中的自由移动塑料载体上。 MBBR IFAS过程中使用粗或精细气泡曝气系统。在该研究中,通过添加所研究的载体,甚至加工(类似于每种Vol%的载体材料的1%),显着提高了粗气泡曝气系统的氧气转移效率(OTE)。在精细气泡曝气系统中,载体对OTE几乎没有影响。载体对蛋白的影响强烈取决于曝气系统的性质,载体的体积填充率,载体介质的性质以及反应器几何形状。本研究表明,与清洁水条件相比,载体对蛋白对蛋白的影响不太明显。在设计新的运营商时,为了进一步提高他们对食品的影响,供应商应考虑到这一点。尽管通过添加载体可以显着提高粗气泡曝气系统的能效和成本效益,但在应用研究的MBBR IFAS过程时,细气孔曝气系统仍然是曝气更有效和经济的替代方案。

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