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首页> 外文期刊>International Dairy Journal >Influence of operating conditions on membrane fouling in crossflowmicrofiltration of particulate suspensions
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Influence of operating conditions on membrane fouling in crossflowmicrofiltration of particulate suspensions

机译:颗粒悬浮液错流微滤中操作条件对膜结垢的影响

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摘要

The effects of the operating conditions on the crossflow microfiltration (CFMF) of particulate suspensions were investigated. Lactalbumin particles were used as the feed material. Experiments were carried out in constant transmembrane pressure (TMP) mode using tubular ceramic membrane modules. All important parameters (internal and surface fouling, cake mass, height, porosity, and particle size distribution (PSD)) were estimated to provide a more complete understanding of the process than has been attempted before. Lactalbumin particles which are highly irregular in shape and widely size distributed formed an adhesive cake on the membrane surface during CFMF. The porosity and particle size of the deposited cake decreased with time of filtration. The value 100 kPa was found to be optimum with respect to the permeate flux in the studied range of TMP. Particle size classification effects of TMP and crossflow velocity (CFV) were demonstrated. The results of this study provided a possible explanation to the contradictory reports on the effect of CFV on the steady-state flux and the time required to obtain it. Significantly, the internal fouling first decreased with increasing CFV and then increased above 1.5 m s(-1). This is attributed to the particles size classification effect of CFV. A process was developed based on the observed effects of the operating parameters on the CFMF performance that enables operation at very low internal fouling and high flux for as long as 160 min. The developed process has the potential to become commercial if coupled with backflushing.
机译:研究了操作条件对颗粒悬浮液的错流微滤(CFMF)的影响。乳清蛋白颗粒用作进料。使用管状陶瓷膜组件以恒定的跨膜压(TMP)模式进行实验。估计所有重要参数(内部和表面结垢,滤饼质量,高度,孔隙率和粒度分布(PSD))比以前尝试提供的方法更加完整。在CFMF过程中,形状高度不规则且尺寸分布较广的乳清蛋白颗粒在膜表面形成了一块粘着的饼。沉积的滤饼的孔隙率和粒度随过滤时间而降低。在TMP的研究范围内,发现相对于渗透通量而言,最佳值为100 kPa。证明了TMP和横流速度(CFV)的粒度分类效果。这项研究的结果为有关CFV对稳态通量的影响及其获得所需时间的矛盾报道提供了可能的解释。值得注意的是,内部污垢首先随着CFV的增加而减少,然后在1.5 m s(-1)以上增加。这归因于CFV的粒度分类作用。根据观察到的运行参数对CFMF性能的影响开发了一种工艺,该工艺能够在非常低的内部结垢和高流量下运行长达160分钟。如果与反吹相结合,则已开发的工艺有可能商业化。

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