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Reduction of membrane fouling by innovative method (injection of air jet)

机译:通过创新方法减少膜结垢(喷射空气)

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Background One of the most important challenges about the Membrane Bio Reactors is membrane fouling. Fouling has been at the centre of a globe debate for more recent years. It leads to high operational and maintenance costs such as membrane damage and replacement of membrane. Membrane fouling is attributed to the physicochemical interactions between the bio fluid and membrane. In order to decrease the fouling in bioreactors there are common anti fouling strategies such as operation at low flux, Optimization of aeration flow-rate and Physical and chemical cleanings. However, often they are not effective. Methodology This work deal with fouling crisis by a new and innovative method in order to reduce of fouling on membrane surface by injection of parallel air jet on membrane bio reactor. This is a new idea and fundamental study about the influence of wall jet on fouling of membrane surface. This study is included both experimental and numerical investigations. In order to polarize the stream path on the surface of the membrane, four symmetric nozzles were implemented at the bottom of the membrane surface upon the sparger. The changes in the fouling resistance were experimentally measured at five various jet velocities and all of them recorded by a computer system. In addition the effect of air jet velocity and shear stress on fouling resistances was also investigated by computational fluid dynamics at the similar conditions. Results It was revealed that the permeate flux and resistance of fouling can be related to shear stress of air flow at the membrane surface. When the velocity of air jets increase, the permeate flux increase too. Also, results illustrate that jet injection can partially remove the cake which was formed on the surface of the membrane. Conclusions Correlations were developed for estimating each resistance of the membrane surface via the shear stress. The resistances of the cake are removed by the jet velocity changes, from 20% in lower jet velocity up to 40% in higher jet velocity.
机译:背景技术关于膜生物反应器的最重要挑战之一是膜污染。近年来,结垢一直是全球争论的焦点。这导致高昂的运营和维护成本,例如膜损坏和膜更换。膜污染归因于生物流体和膜之间的物理化学相互作用。为了减少生物反应器中的结垢,有常见的防结垢策略,例如在低通量下运行,优化曝气流速以及进行物理和化学清洁。但是,它们通常无效。方法学这项工作通过一种新颖的方法来解决结垢危机,以通过在膜生物反应器上注入平行空气射流来减少膜表面的结垢。这是关于壁流对膜表面结垢影响的新思想和基础研究。这项研究包括实验和数值研究。为了极化膜表面上的流路,在分布器上的膜表面底部安装了四个对称喷嘴。在五种不同的喷射速度下,通过实验测量了耐污垢性的变化,所有这些都由计算机系统记录下来。另外,还通过在类似条件下的计算流体动力学研究了空气喷射速度和剪切应力对耐污染性的影响。结果表明,渗透通量和结垢阻力与膜表面气流的切应力有关。当喷气速度增加时,渗透通量也增加。而且,结果表明喷射注入可以部分除去在膜表面上形成的滤饼。结论建立了相关性,以通过剪切应力估算膜表面的每个阻力。滤饼的阻力通过喷射速度的变化而去除,从较低喷射速度下的20%到较高喷射速度下的40%。

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