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首页> 外文期刊>Journal of Membrane Science >Enhancing microfiltration through an inorganic tubular membrane by gas sparging
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Enhancing microfiltration through an inorganic tubular membrane by gas sparging

机译:通过气体喷射增强通过无机管膜的微滤

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摘要

A novel technique is tested for reducing tubular mineral membrane fouling by injecting gas into a cross-flow stream. The injcted gas is thought to form complex hydrodynamic conditions inside the microfiltration module which increase the wall shear stress, preventing the membrane fouling and enhancing the microfiltration mass transfer. The experimental study was carried out with a ferric hydroxide suspension and a biologically treated wastewater, both of them filtered through a tubular inorganic membrane (Carbosep M14). The sparging led to an increase of the permeate flux with a flow structure for the two kinks of suspension. New dimensionless quantities of shear stress number and resistance number were developed by generalized dimensional analysis of steady state flux in sparged and unsparged cross-flow filtration. An unique formalism allowed interpretation of the experimental results both in classical diphasic filtration and with gas sparging. The variation in the dimensionless numbers demonstrated the benefit of gas sparging.
机译:测试了一种通过将气体注入错流来减少管状矿物膜污染的新技术。被过滤的气体被认为在微滤模块内部形成复杂的流体动力学条件,从而增加了壁剪切应力,防止了膜污染并增强了微滤传质。实验研究是用氢氧化铁悬浮液和生物处理的废水进行的,两者都通过管状无机膜(Carbosep M14)过滤。喷泡导致渗透液通量增加,具有两个悬浮液扭结的流动结构。通过对分布式和非分布式错流滤液中稳态通量的广义量纲分析,建立了新的无量纲剪切应力数和阻力数。一种独特的形式主义允许在经典的双相过滤和气体喷射中解释实验结果。无量纲数的变化证明了气体喷射的好处。

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