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首页> 外文期刊>Separation and Purification Technology >Permeability performance of different molecular weight cellulose acetate hemodialysis membrane
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Permeability performance of different molecular weight cellulose acetate hemodialysis membrane

机译:不同分子量醋酸纤维素血液透析膜的渗透性能

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摘要

Dialysis membranes were casted from solutions containing 20 wt.% cellulose acetate (CA), various concentrations of monosodium glutamate (MSG) and formic acid. Effect of MSG and different molecular weights of cellulose acetate on membrane permeability was investigated. As the MSG concentration increased from 2 wt.% to 6 wt.%, the uremic toxins permeability was enhanced, but further increase beyond this point did not improve the permeability performance. Similar separation trend was observed regardless of the CA molecular weight used, but membranes produced form high molecular weight CA membrane exhibit better uremic toxic permeability. SEM images illustrated that MSG influences the membrane thickness and macrovoids formation, while high molecular weight CA tends to suppress the size of the macrovoids. MSG also tends to reduce the membrane resistance promoting the formation of porous structure and thus explained for high ultrafiltration rate (UFR). In order to gain more insight on the influence of both MSG and molecular weight of CA on membrane properties, the membrane surfaces were analysed using Attenuated Total Reflection Fourier Transform Infrared (ATR-FTIR), contact angle measurement (CAM), atomic force measurement (AFM). In addition, mechanical test and thermal stability studies were performed in this study to evaluate the strength of the membranes. In short, MSG and high molecular weight CA played crucial roles in enhancing the separation performance.
机译:透析膜由含有20 wt。%醋酸纤维素(CA),各种浓度的味精(MSG)和甲酸的溶液浇铸而成。研究了味精和不同分子量的醋酸纤维素对膜通透性的影响。当MSG浓度从2重量%增加至6重量%时,尿毒症毒素的渗透性增强,但是超过该点的进一步增加并未改善渗透性。无论使用哪种CA分子量,都观察到相似的分离趋势,但是由高分子量CA膜制得的膜表现出更好的尿毒症毒性渗透性。 SEM图像表明,MSG影响膜厚度和大孔的形成,而高分子量CA倾向于抑制大孔的尺寸。 MSG还倾向于降低膜阻力,从而促进多孔结构的形成,因此可以解释为超滤速率高(UFR)。为了深入了解味精和CA分子量对膜性能的影响,使用衰减全反射傅立叶变换红外光谱(ATR-FTIR),接触角测量(CAM),原子力测量( AFM)。另外,在这项研究中进行了机械测试和热稳定性研究,以评估膜的强度。简而言之,味精和高分子量CA在增强分离性能中起着至关重要的作用。

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