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Preparation of CuONPs@PVDF/Non-Woven Polyester Composite Membrane: Structural Influence of Nanoparticle Addition

机译:CUONPS @ PVDF /无纺布聚酯复合膜的制备:纳米粒子加成的结构影响

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摘要

Membrane distillation techniques have appeared as promising options for guaranteeing the availability of potable water in times of scarcity of this essential resource. For membrane preparation, polyvinylidene fluoride (PVDF) is preferred due to the easier synthesis procedures, with respect to other fluorine-based polymers. In this work, copper oxide nanoparticles (CuONPs) of different weight percent (wt %) embedded in PVDF membranes supported on non-woven polyester fabric (NWPET) were prepared by the phase inversion method, and characterized by spectroscopy (ATR-FTIR, Raman) and electron microscopy techniques (SEM). The PVDF deposited onto the NWPET was mostly composed of its polar β-phase (F(β) = 53%), which was determined from the ATR-FTIR spectrum. The F(β) value remained constant throughout the whole range of added CuONP concentrations (2–10 wt %), as was determined from the ATR-FTIR spectrum. The absence of signals corresponding to CuONPs in the ATR-FTIR spectra and the appearance of peaks at 297, 360, and 630 cm−1 in the Raman spectra of the membranes suggest that the CuONPs are preferably located in the inner PVDF membrane, but not on its surface. The membrane morphologies were characterized by SEM. From the obtained SEM micrographs, a decrease and increase in the amount of micropores and nanopores, respectively, near the surface and intercalated in the finger-like layer were observed. As a result of the CuONP addition, the nanopores in the sponge-like layer decreased in size. The values of water contact angle (WCA) measurements showed a decreasing trend, from 94° to 80°, upon the addition of CuONPs (2–10 wt %), indicating a diminishment in the hydrophobicity degree of the membranes. Apparently, the increase in the amount of nanopores near the surface decreased the membrane roughness, so it became less hydrophobic.
机译:膜蒸馏技术似乎是有希望的选择,用于保证这种基本资源稀缺时饮用水的可用性。对于膜制备,由于较容易的合成程序,相对于其他氟基聚合物,优选聚偏二氟乙烯(PVDF)。在这项工作中,通过相复纵方法制备嵌入在非织造聚酯织物(NWPET)上负载的PVDF膜中的不同重量百分比(WT%)的氧化铜纳米颗粒(CUONP),并通过光谱学特征(ATR-FTIR,拉曼)和电子显微镜技术(SEM)。沉积在NWPE上的PVDF大部分由其极性β相的(F(β)= 53%)组成,其由ATR-FTIR光谱测定。在添加的CuONP浓度(2-10wt%)的整个范围内,F(β)值仍然是恒定的,从ATR-FTIR光谱中测定。由于没有对应于ATR-FTIR光谱和峰中的297的外观,360,和630厘米-1的膜的拉曼光谱CuONPs信号表明CuONPs优选位于内PVDF膜,但不在它的表面上。膜形态的特征在于SEM。从所获得的SEM显微照片中,观察到微孔和纳米孔的量的降低和增加,接近表面附近并在指状层中插入。由于CUONP的结果,海绵状层中的纳米孔的尺寸降低。水接触角(WCA)测量值显示在加入CUONPS(2-10wt%)时从94°到80°的降低趋势,表明在膜的疏水程度中减小。显然,表面附近的纳米孔的量的增加降低了膜粗糙度,因此它变得较少疏水。

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