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首页> 外文期刊>Theoretical foundations of chemical engineering >Membrane Filtration with Reversible Adsorption: The Effect of Transmembrane Pressure, Feed Flow Rate, and the Geometry of Hollow Fiber Filters on Their Performance
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Membrane Filtration with Reversible Adsorption: The Effect of Transmembrane Pressure, Feed Flow Rate, and the Geometry of Hollow Fiber Filters on Their Performance

机译:具有可逆吸附的膜过滤:跨膜压力,进料流速和中空纤维过滤器的几何形状对其性能的影响

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摘要

The effect of transmembrane pressure, feed flow rate, and the geometry of hollow-fiber filters on their performance is studied for depth membrane filtration with reversible adsorption. Mathematical models for rectangular and radial filters are used to find the maximal operation times with a filter retention of not less than 0.9 at constant product (permeate plus filtrate) flow rates for the treatment of a latex suspension in continuous-flow and batch operations. It is shown that the maximal operation time and, hence, product volume is achieved when the feed flow rate approaches the initial permeate flow rate. It is also found that several filters with a lower initial permeate flow rate allow one to achieve a much longer operation time than one filter with the same total initial permeate flow rate.
机译:对于可逆吸附的深度膜过滤,研究了跨膜压力,进料流速和中空纤维过滤器的几何形状对其性能的影响。矩形和径向过滤器的数学模型用于在恒定流量(渗透物加滤液)下以恒定流量(渗透液和滤液)处理不小于0.9的过滤器时,可找到最大操作时间,用于连续流动和分批操作中的乳胶悬浮液的处理。结果表明,当进料流速接近初始渗透液流速时,可以达到最大的操作时间,从而获得最大的产品体积。还发现,几个具有较低初始渗透物流速的过滤器比一个具有相同总初始渗透物流速的过滤器允许更长的操作时间。

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