一种新型高分子多通道超滤膜的MRI研究

IF 2.5 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Frontiers in chemical engineering Pub Date : 2023-02-01 DOI:10.3389/fceng.2022.1083180
Stefanie Kern, Rahel Lerner, N. Schork, H. Nirschl, M. Heijnen, G. Guthausen
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引用次数: 0

摘要

研究了用于内外过滤的新型聚合物多通道膜的膜超滤,以深入了解其结构、流动和过滤性能。膜的明显新颖性涉及进料通道的几何形状和配置。原位磁共振成像(MRI)允许以足够的空间和时间分辨率进行非侵入性和非破坏性研究。以35µm/像素的平面内空间分辨率测量了新型聚合物膜的结构,首先揭示了19通道膜上的聚合物密度分布,其次揭示了纤维及其不同尺寸空腔的润湿性。MRI也被用来回答有关通道中流量和饲料分布的问题。最后,观察到藻酸钠水溶液的原位过滤,这导致在通道的内表面形成沉积物。对这种沉积物形成的动力学进行了量化。反冲洗和冲洗可以深入了解通道的可清洁性。
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MRI on a new polymeric multichannel membrane for ultrafiltration
Membrane ultrafiltration in new polymeric multi-channel membranes designed for in-out filtration was investigated to get insights into structure, flow and filtration properties. The apparent novelty of the membrane concerns the geometry and configuration of the feed channels. In-situ magnetic resonance imaging (MRI) allows non-invasive and non-destructive investigations with adequate spatial and time resolution. The structure of the new polymeric membrane was measured with an in-plane spatial resolution of 35 µm/pixel revealing first the polymer density distribution over the 19-channel membrane and second the wettability of the fiber and its cavities of different dimensions. MRI was also used to answer questions about flow and consequently feed distribution in the channels. Finally, in-situ filtration of an aqueous solution of sodium alginate was observed which led to deposit formation at the channel’s inner surfaces. The kinetics of this deposit formation was quantified. Backwashing and flushing gave insight into the cleanability of the channels.
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3.50
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审稿时长
13 weeks
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