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Strengthening of polysulfone membranes using hybrid mixtures of micro- and nano-scale modifiers

机译:使用微米级和纳米级改性剂的混合混合物增强聚砜膜

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Polysulfone (PSf) membranes were modified by either a new organic modifier (sulfonated poly(ether sulfide sulfone), SPESS) or a traditional modifier (rice hulk). These membranes were further reinforced with either multi-walled carbon nanotubes (MWCNTs) or silica nanoparticles. Having a dye rejection of 98.46%, the reinforced membranes increased more than 50% in strength but no change in solution flux was observed. The morphological and roughness studies were conducted using scanning electron microscopy and atomic force microscopy. Moreover, the PSF membranes were also characterized by differential scanning calorimetry. Modifying the membranes with organic modifier or nanofiller increases the glass transition temperature ( T ~( g )). The highest T ~( g )and strength were observed for the PSf-SPESSMWCNT membrane. SPESS decreases surface roughness but MWCNT increases roughness on the nanoscale. All membranes show a bimodal pore size distribution, whereas the PSf-SPESS-MWCNT membrane exhibits a relatively uniform distribution of macroscopic and microscopic pores.
机译:聚砜(PSf)膜通过新的有机改性剂(磺化聚醚醚砜,SPESS)或传统的改性剂(ric米)进行了改性。这些膜用多壁碳纳米管(MWCNT)或二氧化硅纳米颗粒进一步增强。具有98.46%的染料截留率,增强膜的强度增加了50%以上,但未观察到溶液通量的变化。使用扫描电子显微镜和原子力显微镜进行形态和粗糙度研究。此外,PSF膜的特征还在于差示扫描量热法。用有机改性剂或纳米填料改性膜会增加玻璃化转变温度(T〜(g))。 PSf-SPESSMWCNT膜的最高T〜(g)和强度最高。 SPESS降低了表面粗糙度,但MWCNT增加了纳米级的粗糙度。所有膜均显示出双峰孔径分布,而PSf-SPESS-MWCNT膜则显示出相对均匀的宏观和微观孔分布。

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