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首页> 外文期刊>Cellulose >Preparation of highly flexible cellulose acetate membranes modified by hyperbranched poly(amine ester)-epoxidized soybean oil and evaluation of its filtration properties
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Preparation of highly flexible cellulose acetate membranes modified by hyperbranched poly(amine ester)-epoxidized soybean oil and evaluation of its filtration properties

机译:通过超支化聚(胺酯) - 氧化大豆油改性高度柔性纤维素醋酸纤维素的制备及其过滤性能评价

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Cellulose acetate (CA) is considered as one of the first materials used in membrane technology. However, CA membranes suffered finding their way for widespread commercial applications due to low mechanical stability and sensitivity to bio-fouling. In this study a green procedure was developed to overcome some of CA drawbacks in membrane applications. For this purpose 2nd generation of hyperbranched poly(amine ester) (HBPAE-G2), was synthesized using methyl 3-[bis(2-hydroxyethyl)amino]propanoate and triethanolamine through a pseudo one-pot polycondensation, reacted with soybean oil fatty acid, and then double bonds epoxidized by H2O2/formic acid to acquire hyperbranched poly(amine ester)-epoxidized soybean oil (HBPAE-ESBOFA). Finally, this reactive additive was blended with CA membrane dope solution to obtain simultaneously plasticized and cross-linked structure. Synthesis procedures were monitored by FTIR and NMR techniques, and membrane samples were investigated using ATR-FTIR, FE-SEM (top and cross-sectional), TGA and DSC. Filtration properties were studied by determining pure water flux, water contact angle, bio-fouling, water content, mean pore size and solute rejection tests. Permeability tests showed decline in water flux, but fouling resistance, salt rejection and thermal properties improved. Moreover, modified samples showed fascinating flexibility and mechanical stability enhanced dramatically.
机译:醋酸纤维素(CA)被认为是膜技术中使用的第一材料之一。然而,由于对生物污垢的机械稳定性和敏感性,CA膜遭受了广泛的商业应用。在本研究中,开发了一种绿色程序,以克服膜应用中的一些CA缺点。为此目的,使用甲基3- [双(2-羟乙基)氨基]通过丙氨酸和三乙醇胺通过伪一罐缩聚合成,通过伪一罐缩聚合成,与大豆油脂肪酸反应然后由H 2 O 2 /甲酸环氧化的双键,以获得超支化聚(胺酯) - 氧化豆油(HBPAE-ESBOFA)。最后,将该反应性添加剂与Ca膜掺杂溶液混合,得到同时增塑和交联结构。通过FTIR和NMR技术监测合成程序,使用ATR-FTIR,Fe-SEM(顶部和横截面),TGA和DSC来研究膜样品。通过测定纯净水通量,水接触角,生物污垢,含水量,平均孔径和溶质排斥试验来研究过滤性能。渗透性试验显示出水通量下降,但抗污垢,耐盐和热性能改善。此外,改性样品显示出令人迷人的灵活性和机械稳定性急剧增强。

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