首页> 外文会议>Biennial conference of the International Association on Water Quality >MODELING OF BIOFOULING BY EXTRACELLULAR POLYMERS IN A MEMBRANE SEPARATION ACTIVATED SLUDGE SYSTEM
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MODELING OF BIOFOULING BY EXTRACELLULAR POLYMERS IN A MEMBRANE SEPARATION ACTIVATED SLUDGE SYSTEM

机译:膜分离活性污泥系统中胞外聚合物对生物絮凝的模拟

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A Laboratory-scale experiment was conducted to investigate the mechanism of the bio-fouling in the submerged membrane separation activated sludge system. Flat-sheet-type membrane module was used and the change of the pressure and the filtration resistance was measured. Two reactors were operated in parallel to investigate the influence of organic loading rate on the reactor performance. A mathematical model was developed to simulate temporal changes of suction pressure, flux and filtration resistance considering accumulation, detachment and consolidation of EPS on the membrane surface. Parameters in the model were determined so that the calculated results fit to the measured variation curves. The high load reactor (1.5g-TOC L~(-1) day~(-1)) showed a sudden increase of the pressure and a decrease of flux after 40th days, which could not be recovered even by membrane cleanings, while the low load reactor (0.5g-TOC L~(-1) day~(-1)) showed little increase of the pressure until 120th days. The measured pattern of the flux, the pressure and the resistance were well explained by the developed model. Using the model, influence of operational parameters, such as organic loading rate, flux and shear stress working on the membrane, on the reactor performance was evaluated. It was concluded that the flux is the most influential parameter and when the flux is more than a critical value, which is as low as 0.1m day~(-1), maximum time during which the set flux can be maintained becomes very short.
机译:进行了实验室规模的实验,以研究浸没膜分离活性污泥系统中生物污垢的机理。使用平板型膜组件,并且测量压力和耐过滤性的变化。两个反应器并联运行以研究有机负载速率对反应器性能的影响。考虑到膜表面EPS的积累,分离和固结,开发了一个数学模型来模拟吸气压力,通量和过滤阻力的时间变化。确定模型中的参数,以使计算结果适合测得的变化曲线。高负荷反应器(1.5g-TOC L​​〜(-1)天〜(-1))在第40天后显示压力突然升高,通量降低,即使通过膜清洗也无法恢复,而低负荷反应器(0.5g-TOC L​​〜(-1)天〜(-1))直到第120天压力几乎没有增加。所开发的模型很好地说明了磁通量,压力和电阻的测量模式。使用该模型,评估了运行参数(例如有机负载率,通量和作用在膜上的切应力)对反应器性能的影响。可以得出结论,通量是最有影响力的参数,当通量大于临界值(低至0.1m day〜(-1))时,可以维持设定通量的最长时间将变得非常短。

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