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Enhanced microfiltration of yeast by flocculation

机译:通过絮凝增强酵母微滤

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Flocculation of yeast cells prior to microfiltration leads to improved permeate flux. A number of commercially available cationic polyacrylamides from Cytec Industries (Stamford, CT, USA) were tested. These flocculants had different molecular weights and charge densities. The optimum flocculant dose and stirring conditions were determined for each polymer. The particle size distribution before flocculation and after flocculation and microfiltration was determined. The permeate flux depended strongly on the particle size distribution. Very small micron and submicron sized particles plug the pores of the membrane leading to decreased permeate flux. Very large floes, 500 μm or larger plug the lumen of the hollow fibres again leading to a decrease in permeate flux. The optimum particle size is about 100-200 μm. The permeate flux increased with increasing molecular weight and charge density (percentage of monomer units that are charged) of the flocculant.
机译:在微滤之前对酵母细胞进行絮凝可改善渗透通量。测试了来自Cytec Industries(Stamford,CT,USA)的许多市售阳离子聚丙烯酰胺。这些絮凝剂具有不同的分子量和电荷密度。确定每种聚合物的最佳絮凝剂剂量和搅拌条件。测定在絮凝之前以及在絮凝和微滤之后的粒度分布。渗透通量在很大程度上取决于粒度分布。非常小的微米和亚微米尺寸的颗粒堵塞了膜的孔,导致渗透通量降低。 500μm或更大的非常大的絮状物堵塞了中空纤维的内腔,再次导致渗透通量降低。最佳粒径约为100-200μm。渗透通量随着絮凝剂的分子量和电荷密度(带电单体单元的百分比)的增加而增加。

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