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3D visualization of the internal nanostructure of polyamide thin films in RO membranes

机译:反渗透膜中聚酰胺薄膜内部纳米结构的3D可视化

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摘要

The front and back surfaces of fully aromatic polyamide thin films isolated from reverse osmosis (RO) membranes were characterized by TEM, SEM and AFM. The front surfaces were relatively rough showing polyamide protuberances of different sizes and shapes; the back surfaces were all consistently smoother with very similar granular textures formed by polyamide nodules of 20–50 nm. Occasional pore openings of approximately the same size as the nodules were observed on the back surfaces. Because traditional microscopic imaging techniques provide limited information about the internal morphology of the thin films, TEM tomography was used to create detailed 3D visualizations that allowed the examination of any section of the thin film volume. These tomograms confirmed the existence of numerous voids within the thin films and revealed structural characteristics that support the water permeance difference between brackish water (BWRO) and seawater (SWRO) RO membranes. Consistent with a higher water permeance, the thin film of the BWRO membrane ESPA3 contained relatively more voids and thinner sections of polyamide than the SWRO membrane SWC3. According to the tomograms, most voids originate near the back surface and many extend all the way to the front surface shaping the polyamide protuberances. Although it is possible for the internal voids to be connected to the outside through the pore openings on the back surface, it was verified that some of these voids comprise nanobubbles that are completely encapsulated by polyamide. TEM tomography is a powerful technique for investigating the internal nanostructure of polyamide thin films. A comprehensive knowledge of the nanostructural distribution of voids and polyamide sections within the thin film may lead to a better understanding of mass transport and rejection mechanisms in RO membranes.
机译:从反渗透(RO)膜中分离出的全芳族聚酰胺薄膜的正面和背面通过TEM,SEM和AFM表征。前表面相对粗糙,显示出不同尺寸和形状的聚酰胺突起;背面均一致光滑,并具有由20–50 nm的聚酰胺结节形成的非常相似的颗粒纹理。有时在背面观察到大小与结节相同大小的孔。由于传统的显微成像技术只能提供有关薄膜内部形态的有限信息,因此使用TEM断层扫描来创建详细的3D可视化效果,从而可以检查薄膜体积的任何部分。这些断层图证实了薄膜中存在大量空隙,并揭示了支持微咸水(BWRO)和海水(SWRO)RO膜之间的水渗透率差异的结构特征。与较高的水渗透性一致,与SWRO膜SWC3相比,BWRO膜ESPA3的薄膜包含相对更多的空隙和更薄的聚酰胺截面。根据断层图,大多数空隙起源于背面附近,许多空隙一直延伸到正面,从而形成聚酰胺突起。尽管内部空隙可以通过背面上的孔口与外部连接,但已证实这些空隙中的一些包含被聚酰胺完全包封的纳米气泡。 TEM断层扫描是研究聚酰胺薄膜内部纳米结构的强大技术。全面了解薄膜中空隙和聚酰胺部分的纳米结构分布,可能会导致人们更好地理解反渗透膜的传质和排斥机理。

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