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Characterization and swelling–deswelling properties of porous superabsorbent hydrogel membranes made of PVA and Ziziphus spina-christi fibers reinforced with nanosilica manufactured by compression moulding process

机译:用压缩成型工艺制造的PVA和Ziziphus脊柱脊髓孔膜制成的多孔超吸收水凝胶膜的表征和膨胀性能

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Novel superabsorbent membranes consisting of polyvinyl alcohol (PVA), cellulose nanocrystals originated from Ziziphus spina-christi fibers, nanosilica, glutaraldehyde, and glycerin (G) were manufactured by compression moulding process. Ziziphus spina-christi fibers are a new source to isolate pure cellulose nanocrystals via mechanical and chemical treatment. Ziziphus spina-christi fibers were used to improve water-saving irrigation systems. Glycerin was used to increase the elasticity of superabsorbent membranes. These membranes were characterized by FTIR, XRD, SEM, mechanical testing, and thermal analysis. Superabsorbent membranes showed greater equilibrium swelling capacity compared with neat cross-linked PVA. Moreover, water transport mechanism of all superabsorbent membranes followed Fickian diffusion type. Superabsorbent membranes exhibited good pH-dependent swelling reversibility and high-water retention capacity, making it more efficient water-saving material. The superabsorbent membranes were also investigated for antimicrobial activities against pathogenic bacteria like Candida albicans (fungus), Bacillus subtilis (G+ve), Staphylococcus aureus (G+ve), Proteus vulgaris (G?ve), and Erwinia carotovora (G?ve). The results showed that design of innovative bioactive superabsorbent membranes is promising for the water reservoir, which might be most profitable in agricultural applications.
机译:通过压缩成型方法制造由源自Ziziphus Spina-Christi纤维,纳米硅藻,戊二醛和甘油(G)组成的新型超吸收性膜,由Ziziphus Spina-Christi纤维,纳米硅烷,戊二醛和甘油(G)组成。 Ziziphus Spina-Christi纤维是一种新的源,通过机械和化学处理将纯纤维素纳米晶体分离出来。 Ziziphus Spina-Christi纤维用于改善节水灌溉系统。甘油用于增加超吸收性膜的弹性。这些膜的特征在于FTIR,XRD,SEM,机械测试和热分析。与整齐的交联PVA相比,超吸收性膜显示出更大的平衡膨胀能力。此外,所有超吸收膜的水运输机理遵循Fickian扩散型。超吸收性膜表现出良好的pH依赖性肿胀可逆性和高水平保留能力,使其节水更有效。还研究了超吸收性膜,用于对念珠菌(真菌),枯草芽孢杆菌(G + VE),葡萄球菌(G + VE),Proteus Ventgaris(G'Ve)和Erwinia Carotovora(G'Ve )。结果表明,创新的生物活性超吸收膜的设计对水库有前途,这可能在农业应用中最有利可图。

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