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Impact of flow regime on pressure drop increase and biomass accumulation and morphology in membrane systems

机译:流动方式对膜系统中压降增加以及生物量积累和形态的影响

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Biomass accumulation and pressure drop development have been studied in membrane fouling simulators at different flow regimes. At linear flow velocities as applied in practice in spiral wound nanofiltration (NF) and reverse osmosis (RO) membranes, voluminous and filamentous biofilm structures developed in the feed spacer channel, causing a significant increase in feed channel pressure drop. Elevated shear by both single phase flow (water) and two phase flow (water with air sparging: bubble flow) caused biofilm filaments and a pressure drop increase. The amount of accumulated biomass was independent of the applied shear, depending on the substrate loading rate (product of substrate concentration and linear flow velocity) only. The biofilm streamers oscillated in the passing water. Bubble flow resulted in a more compact and less filamentous biofilm structure than single phase flow, causing a much lower pressure drop increase. The biofilm grown under low shear conditions was more easy to remove during water flushing compared to a biofilm grown under high shear. To control biofouling, biofilm structure may be adjusted using biofilm morphology engineering combined with biomass removal from membrane elements by periodic reverse flushing using modified feed spacers. Potential long and short term consequences of flow regimes on biofilm development are discussed. Flow regimes manipulate biofilm morphology affecting membrane performance, enabling new approaches to control biofouling.
机译:在不同流量状态下的膜污染模拟器中已经研究了生物质积累和压降的发展。在实际应用于螺旋伤口纳滤(NF)和反渗透(RO)膜的线性流速下,进料间隔通道中形成了大量和丝状生物膜结构,导致进料通道压降显着增加。单相流(水)和两相流(有空气喷射的水:气泡流)引起的剪切力升高会导致生物膜细丝和压降增加。累积的生物量不取决于所施加的剪切力,仅取决于底物加载速率(底物浓度和线性流速的乘积)。生物膜流光在经过的水中振荡。与单相流相比,气泡流产生的结构更紧密,丝状生物膜的结构更少,从而导致压降增加得低得多。与在高剪切下生长的生物膜相比,在低剪切条件下生长的生物膜在水冲洗期间更容易去除。为了控制生物污染,可以使用生物膜形态工程技术结合通过使用修饰的进料间隔物定期进行反冲洗从膜元件中去除生物质来调节生物膜结构。讨论了流动方式对生物膜发育的潜在长期和短期影响。流动方式可以控制影响膜性能的生物膜形态,从而实现控制生物污垢的新方法。

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