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Ultrasonic Control of UF Membrane Fouling by Natural Waters: Effects of Calcium, pH, and Fractionated Natural Organic Matter

机译:天然水超声控制超滤膜污染:钙,pH和分馏天然有机物的影响

摘要

Ultrasound at a frequency of 20kHz and a power of 16W was applied to a cross-flow ultrafiltration system to investigate the ultrasonic control of surface-water fouled ceramic membranes. Ultrasound was effective in improving the normalized permeate flux of a surface water, from 0.21 in the absence of ultrasound to 0.70 with the aid of ultrasound. Moreover, with ultrasound a stable permeate flux was obtained throughout the 2h filtration process. Calcium and pH had little impact on the extent of membrane fouling in the absence of ultrasound; however, ultrasound was more effective at minimizing fouling at lower calcium concentration and moderate pH values, presumably due to weaker foulant–foulant and foulant–membrane interactions at these conditions. Fractionation of natural organic matter (NOM) showed that, in the absence of ultrasound, the hydrophilic fraction contributed greatest to fouling while the hydrophobic fraction contributed less. Also, the extent and rate of fouling caused by the hydrophilic NOM was not sensitive to the change of pH or calcium concentration in feed water. The ultrasonic control of membrane fouling caused by hydrophilic NOM was effective at both calcium concentrations (40 and 180mg/L) investigated. Ultrasonic control of fouling by hydrophilic NOM was more effective at higher pH, presumably due to greater charge repulsion between the membrane and amino acids and peptides in the hydrophilic fraction.
机译:将频率为20kHz,功率为16W的超声应用于错流超滤系统,以研究对表面积水的陶瓷膜的超声控制。超声波有效地提高了地表水的归一化通量,从没有超声波的情况下的0.21到借助超声波的情况下的0.70。此外,在整个2h过滤过程中,使用超声波获得稳定的渗透通量。在没有超声波的情况下,钙和pH值对膜结垢程度的影响很小。然而,在较低的钙浓度和适中的pH值下,超声波在减少污垢方面更有效,这可能是由于在这些条件下污垢-污垢和污垢-膜的相互作用较弱。天然有机物(NOM)的分馏表明,在没有超声波的情况下,亲水性组分对结垢的贡献最大,而疏水性组分的贡献则较小。而且,由亲水性NOM引起的结垢程度和速率对进水中pH或钙浓度的变化不敏感。超声控制亲水性NOM引起的膜污染在两种钙浓度(40和180mg / L)下均有效。超声波控制亲水性NOM在较高的pH下更有效,这可能是由于膜与亲水性部分中氨基酸和肽之间的电荷排斥力更大。

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