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首页> 外文期刊>Journal of Applied Polymer Science >Improving the hydrophilicity of polyethersulfone membrane by the combination of grafting technology and reverse thermally induced phase separation method
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Improving the hydrophilicity of polyethersulfone membrane by the combination of grafting technology and reverse thermally induced phase separation method

机译:通过嫁接技术和逆转热诱导的相分离方法改善聚醚砜膜的亲水性

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摘要

In this work, surface grafting modification technology was combined with reverse thermally induced phase separation (RTIPS) method in order to improve the structure and permanent hydrophilicity of polyethersulfone (PES) membranes. Acrylic solution with different concentrations was grafted on the surface of PES membranes while grafting temperature and grafting time were also varied. The modified PES membranes were characterized in all aspects. Attenuated total reflectance Fourier transform-infrared confirmed successful modification of the PES membrane by grafting acrylic acid. Scanning electron microscopy revealed that homogeneous porous top surface as well as spongy-like cross-section structure appeared in the membrane by RTIPS procedure. Moreover, porosity was affected by changes of acrylic acid concentration, grafting temperature, and grafting time. Atomic force microscopy showed that grafting acrylic acid gave a reduction in roughness of PES membrane. Combined with the decreased values of contact angle, the hydrophilicity and antifouling performance of the PES membrane were improved. The pure water flux and BSA rejection rate of the grafted PES membranes were remarkably improved for pure PES membrane and attained a maximum, which was 1,646.24 L/(m(2)h) and 94.5%, respectively. The long-term test demonstrated that grafting membranes exhibited outstanding elevated water flux recovery ratio (>85%).
机译:在这项工作中,表面移植修饰技术与逆热诱导的相分离(RTIPS)方法相结合,以改善聚醚砜(PES)膜的结构和永久性亲水性。在PES膜表面上接枝具有不同浓度的丙烯酸溶液,同时接枝温度和接枝时间也变化。修饰的PES膜的特征在于各方面。减振的总反射率傅里叶变换 - 红外线证实通过接枝丙烯酸的PES膜的成功修饰。扫描电子显微镜显示均匀的多孔顶表面以及RTIPS过程中膜中出现的海绵状横截面结构。此外,孔隙率受丙烯酸浓度,接枝温度和接枝时间的变化的影响。原子力显微镜表明,接枝丙烯酸释放于PES膜的粗糙度。结合接触角的减小值,改善了PES膜的亲水性和防污性能。纯PES膜显着提高了接枝PES膜的纯净水通量和BSA抑制率,并达到了最大值,分别为1,646.24升/(m(2)小时)和94.5%。长期试验证明,移植膜表现出较高的水通量回收率(> 85%)。

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