首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Fouling behavior of microstructured hollow fiber membranes in dead-end filtrations: Critical flux determination and NMR imaging of particle deposition
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Fouling behavior of microstructured hollow fiber membranes in dead-end filtrations: Critical flux determination and NMR imaging of particle deposition

机译:末端过滤中微结构化中空纤维膜的结垢行为:临界通量测定和颗粒沉积的NMR成像

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The fouling behavior of microstructured hollow fibers was investigated in constant flux filtrations of colloidal silica and sodium alginate. It was observed that the fouling resistance increases faster with structured fibers than with round fibers. Reversibility of structured fibers- fouling was similar during silica filtrations and better in sodium alginate filtrations when compared with round fibers. The deposition of two different silica sols on the membranes was observed by NMR imaging. The sols had different particle size and solution ionic strength and showed different deposition behaviors. For the smaller particle-sized sol in deionized solution (Ludox-TMA), there was more deposition within the grooves of the structured fibers and much less on the fins. For the alkali-stabilized sol Bindzil 9950, which had larger particles, the deposition was homogeneous across the surface of the structured fiber, and the thickness of the deposit was similar to that on the round fiber. This difference between the deposition behavior of the two sols is explained by differences in the back diffusion, which creates concentration polarization layers with different resistances. The Ludox sol formed a thick polarization layer with very low resistance. The Bindzil sol formed a slightly thinner polarization layer; however, its resistance was much higher, of similar magnitude as the intrinsic membrane resistance. This high resistance of the polarization layer during the Bindzil sol filtration is considered to lead to quick flow regulation toward equalizing the resistance along the fiber surface. The Ludox particles were trapped at the bottom of the grooves as a result of reduced back diffusion. The fouling behavior in sodium alginate filtrations was explained by considering the size-dependent deposition within the broad alginate size distribution. The better reversibility of fouling in the structured fibers is thought to be the result of a looser deposit within the grooves, which is more easily removed than a compressed deposit on the round fibers.
机译:在胶体二氧化硅和藻酸钠的恒定通量过滤中研究了微结构化中空纤维的结垢行为。观察到,结构纤维比圆形纤维的耐污性增加更快。与圆形纤维相比,结构化纤维的结垢可逆性在硅胶过滤过程中相似,在藻酸钠过滤中更好。通过NMR成像观察到两种不同的二氧化硅溶胶在膜上的沉积。溶胶具有不同的粒径和溶液离子强度,并表现出不同的沉积行为。对于去离子溶液(Ludox-TMA)中较小的溶胶,在结构化纤维的凹槽内沉积更多,而在鳍片上沉积更少。对于具有较大颗粒的碱稳定溶胶Bindzil 9950,在结构化纤维表面的沉积是均匀的,沉积物的厚度与圆形纤维的沉积物相似。两种溶胶的沉积行为之间的差异是由反向扩散的差异所解释的,该差异会产生具有不同电阻的浓差极化层。 Ludox溶胶形成了一个电阻极低的厚极化层。 Bindzil溶胶形成了一个稍薄的极化层。然而,它的电阻要高得多,与固有的膜电阻相似。在Bindzil溶胶过滤过程中偏振层的这种高电阻被认为可导致快速的流量调节,以使沿着纤维表面的电阻相等。由于减少的反向扩散,Ludox粒子被困在凹槽的底部。海藻酸钠过滤过程中的结垢行为是通过考虑在宽藻酸盐尺寸分布内取决于尺寸的沉积来解释的。认为结构化纤维中更好的结垢可逆性是凹槽内较松的沉积物的结果,与圆形纤维上的压缩沉积物相比,沉积物较容易清除。

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