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首页> 外文期刊>Journal of Materials Science >AFM analysis of the surface of nanoporous membranes: application to the nanofiltration of potassium clavulanate
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AFM analysis of the surface of nanoporous membranes: application to the nanofiltration of potassium clavulanate

机译:纳米多孔膜表面的原子力显微镜分析:在克拉维酸钾的纳滤中的应用

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摘要

This study presents the structural characterization of the surface of four commercial nanofiltration membranes: NF90 (polyamide) and NF (polypiperazine amide) from FilmtecTM and NP010 and NP030 (polysulfone) from Microdyn Nadir®, by Atomic Force Microscopy (AFM). These membranes have been studied before and after undergoing a filtration process with potassium clavulanate. The fast Fourier filtering of AFM images with very high magnification (40 × 40 nm) has allowed identifying the pore size distribution and geometry of the pores on the surface of the membrane before their use. Images between 0.5 × 0.5 and 10 × 10 μm2 have allowed the study of the surface roughness of the samples before and after being used to filtrate potassium clavulanate solutions. The results of roughness and power spectral fractal dimension along with the skewness and kurtosis of the height distribution have been analyzed in terms of pore size, hydraulic permeability, and the adsorption of clavulanate for the different samples.
机译:这项研究介绍了四种商业纳滤膜的表面结构特征:Filmtec TM 的NF90(聚酰胺)和NF(聚哌嗪酰胺)以及Microdyn Nadir ®<的NP010和NP030(聚砜)< / sup>,由原子力显微镜(AFM)提供。在用棒酸钾过滤过程之前和之后,已经研究了这些膜。 AFM图像具有很高的放大倍率(40×40 nm)的快速傅里叶滤波,可以在使用前识别膜表面上的孔的孔径分布和几何形状。 0.5×0.5和10×10μm 2 之间的图像可以研究样品在过滤克拉维酸钾溶液之前和之后的表面粗糙度。分析了粗糙度和功率谱分形维数以及高度分布的偏度和峰度的结果,这些结果涉及孔径,水力渗透性和克拉维酸盐对不同样品的吸附。

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