首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Three-Dimensionally Printed Microfluidic Cross-flow System for Ultrafiltration/Nanofiltration Membrane Performance Testing
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Three-Dimensionally Printed Microfluidic Cross-flow System for Ultrafiltration/Nanofiltration Membrane Performance Testing

机译:用于超滤/纳滤膜性能测试的三维印刷微流体错流系统

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摘要

Minimization and management of membrane fouling is a formidable challenge in diverse industrial processes and other practices that utilize membrane technology. Understanding the fouling process could lead to optimization and higher efficiency of membrane based filtration. Here we show the design and fabrication of an automated three-dimensionally (3-D) printed microfluidic cross-flow filtration system that can test up to 4 membranes in parallel. The microfluidic cells were printed using multi-material photopolymer 3-D printing technology, which used a transparent hard polymer for the microfluidic cell body and incorporated a thin rubber-like polymer layer, which prevents leakages during operation. The performance of ultrafiltration (UF), and nanofiltration (NF) membranes were tested and membrane fouling could be observed with a model foulant bovine serum albumin (BSA). Feed solutions containing BSA showed flux decline of the membrane. This protocol may be extended to measure fouling or biofouling with many other organic, inorganic or microbial containing solutions. The microfluidic design is especially advantageous for testing materials that are costly or only available in small quantities, for example polysaccharides, proteins, or lipids due to the small surface area of the membrane being tested. This modular system may also be easily expanded for high throughput testing of membranes. 
机译:膜污染的最小化和管理是在利用膜技术的各种工业过程和其他实践中的巨大挑战。了解结垢过程可能会导致膜过滤的优化和更高效率。在这里,我们展示了自动三维(3-D)印刷微流体错流过滤系统的设计和制造,该系统可以并行测试多达4个膜。使用多材料光敏聚合物3-D打印技术来打印微流体电池,该技术将透明的硬质聚合物用于微流体电池主体,并加入了薄的橡胶状聚合物层,从而防止了操作期间的泄漏。测试了超滤(UF)和纳滤(NF)膜的性能,并使用模型污垢牛血清白蛋白(BSA)观察了膜的结垢情况。含有BSA的进料溶液显示出膜通量下降。该协议可以扩展到使用许多其他有机,无机或微生物溶液测量结垢或生物结垢。微流体设计对于测试昂贵或仅少量可获得的材料(例如多糖,蛋白质或脂质)特别有利,这是因为被测膜的表面积很小。该模块化系统也可以轻松扩展,以进行膜的高通量测试。

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