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Cellulose Acetate (CA) Membrane Tailored with Fe3O4@ZnO Core Shell Nanoparticles: Fabrication, Structural analysis and Its Adsorption Analysis

机译:醋酸纤维素(CA)膜量身定制的Fe3O4@Zno Core壳纳米颗粒:制造,结构分析及其吸附分析

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摘要

Cellulose acetate polymer membrane was fabricated with Fe3O4@ZnO core-shell nanoparticles through phase inversion technique to enhance the hydrophilic &antifouling properties. The morphology, crystallinity, porosity and surface area of the core shell nanoparticles incorporated membrane were exam- ined using X-Ray Diffraction (XRD), Fourier-transform infrared spectroscopy (FT-IR), High-resolution scanning electron micro- scopy (HR-SEM), High-resolution transmission electron micro- scopy (HR-TEM) /Energy Dispersive X-ray analysis (EDX) studies. The contact angle measurement and wettability test prove the improvement of the hydrophilicity of the membrane with the addition of nanocomposite materials. Adsorption test were performed with the of model dyes such as Congo red (Anionic dye) and Malachite Green (Cationic dye) were investigated using Ultraviolet-visible spectroscopy. The adsorption percent- age against Congo Red (CR) and for Malachite green (MG) were found to be 93% and 70% respectively. Kinetic studies exhibits the rate of the reaction, for CR dye it shows R2 =0.9471 and R2 =0.8609 for MG dye, which obeys the pseudo first order reaction. In addition, the adsorption isotherm model as Langmuir shows that KI values are 0.00338(L/mg) and 0.0486(L/ mg) respectively. Desorption studies exhibits the maximum desorption of dye for Congo red is 89% and 83% for Malachite Green.In a recyclability process, membrane material adsorbs 90% of Congo red dye and 63% of Malachite green dye.
机译:通过相位反转技术,用Fe3O4@ZnO核壳纳米颗粒制成乙酸纤维素聚合物膜,以增强亲水性和防染料性能。使用X射线衍射(XRD),傅立叶转换红外光谱(FT-IR),高分辨率扫描电子(HR)(HR)(HR)(HR -SEM),高分辨率透射电子微观(HR-TEM) /能量色散X射线分析(EDX)研究。接触角度测量和润湿性测试证明了通过添加纳米复合材料的膜的亲水性改善。使用诸如刚果红(阴离子染料)和孔雀石绿色(阳离子染料)等模型染料进行吸附试验,使用紫外线可见光谱法研究了。发现对刚果红(CR)和孔雀石绿色(MG)的吸附百分比分别为93%和70%。动力学研究表现出反应的速率,对于Cr染料,MG染料的R2 = 0.9471和R2 = 0.8609,它遵守伪一级反应。另外,作为Langmuir的吸附等温线模型表明,Ki值分别为0.00338(L/ mg)和0.0486(L/ mg)。解吸研究表明,刚果红的染料的最大解吸为89%和83%。在可回收性过程中,膜材料吸附了90%的刚果红色染料和63%的孔雀石绿色染料。

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