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Microalgae filtration by UF membranes: influence of three membrane materials

机译:超滤膜过滤微藻:三种膜材料的影响

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To evaluate the impact of membrane material on the ultrafiltration performance of microalgae medium, three types of UF membranes: polysulfone membrane GR40PP (PS, MWCO = 100,000 Da), fluoro polymer membrane FS40PP (PVDF, MWCO= 100,000 Da), regenerated cellulose acetate membrane RC70PP (RCA, MWCO = 10,000 Da) were used in this work. Influence of transmembrane pressure (1.3, 1.8, 2.3 bar) and cross-flow velocity (3.86, 4.83, 5.79, 7.72 m/s) on the permeate flux was studied. It was observed that the permeate flux increased with increasing transmembrane pressure for all membranes. Moreover, permeate flux increased as the cross-flow velocity increased. The fluoro polymer membrane showed the most significant improvement of flux (from 83.27 to 136.32 L/m~2h) with increase in cross-flow velocity, which may suggest that the fouling materials attached more weakly on the membrane surface as the cross-flow velocity increased. Hydrophilic RCA membrane had a much lower fouling tendency than hydrophobic PS and PVDF membranes. To maximize flux recovery for the algae-fouled membranes, NaOH, NaOCl, and Ultrasil 10 were applied as cleaning agents. Ultrasil 10 with concentration of 0.5 wt.% was more effective than other agents for membrane cleaning.
机译:为了评估膜材料对微藻培养基超滤性能的影响,使用三种类型的超滤膜:聚砜膜GR40PP(PS,MWCO = 100,000 Da),含氟聚合物膜FS40PP(PVDF,MWCO = 100,000 Da),再生醋酸纤维素膜RC70PP(RCA,MWCO = 10,000 Da)用于这项工作。研究了跨膜压力(1.3、1.8、2.3 bar)和错流速度(3.86、4.83、5.79、7.72 m / s)对渗透通量的影响。观察到,所有膜的渗透通量都随着跨膜压力的增加而增加。而且,渗透流量随着错流速度的增加而增加。随着错流速度的增加,含氟聚合物膜的通量改善最为显着(从83.27升至136.32 L / m〜2h),这可能表明结垢材料与错流速度的关系更弱地附着在膜表面增加。亲水性RCA膜的结垢趋势远低于疏水性PS和PVDF膜。为了使藻类污染的膜的通量恢复最大化,将NaOH,NaOCl和Ultrasil 10用作清洁剂。浓度为0.5 wt。%的Ultrasil 10比其他膜清洁剂更有效。

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