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PVDF/ZnO composite films for photocatalysis: A comparative study of solution mixing and melt blending methods

机译:光催化的PVDF / ZnO复合薄膜:溶液混合和熔融共混方法的比较研究

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摘要

Heterogeneous photocatalysis represents a solution for several environmental problems. However, achieving photocatalyst separation from reaction media on a large scale remains a challenge, one that might be overcome by the immobilization of photocatalysts into supports. To this end, composites of polyvinylidene fluoride and zinc oxide (ZnO) were prepared by three different techniques: solution mixing (SM) followed by Nonsolvent Induced Phase Separation; and melt blending at both low- and high-shear rates (LS and HS) in a rheometer and mixing chamber, respectively, to compare the resultant morphology in photocatalysis. Photocatalytic efficiency was assessed by methylene blue (MB) discoloration in a batch reactor liquid phase and by resazurin (RZ) reduction. The changes promoted by nanoparticle inclusion, processing conditions and UV effect were demonstrated by FTIR-ATR, XRD, DSC, and SEM. Results showed that ZnO incorporation was successful under all processing conditions, providing effective photocatalytic composites. However, samples prepared by SM had a twofold increase in discoloration efficiency and fourfold increase in surface photoactivity, when compared with LS or HS-produced samples, explained by its higher porosity of 88% +/- 1.3%. The covering of the photocatalyst surface was also evident on SEM analysis for melt blended samples, further contributing to reduction in their photocatalytic activity.
机译:异质光催化代表几种环境问题的溶液。然而,从大规模的反应培养基实现光催化剂分离仍然是一个挑战,它可以通过将光催化剂固定到支撑件中来克服的挑战。为此,通过三种不同的技术制备聚偏二氟乙烯和氧化锌(ZnO)的复合材料:溶液混合(SM),然后是非ololvent诱导的相分离;并分别在流变仪和混合室中以低剪切速率(LS和HS)进行熔融混合,以比较光催化在光催化中的结果形态。通过批-反应器液相中的亚甲基蓝色(MB)变色来评估光催化效率,并通过转基因(RZ)还原。通过FTIR-ATR,XRD,DSC和SEM证明了纳米颗粒包含,加工条件和UV效应促进的变化。结果表明,ZnO掺入在所有加工条件下都成功,提供了有效的光催化复合材料。然而,与LS或HS制备的样品相比,SM由SM制备的样品具有两倍的变色效率和表面光活性的四倍,其较高孔隙率为88%+/- 1.3%。光催化剂表面的覆盖物也在SEM分析上显而易见的是熔化混合样品,进一步有助于降低其光催化活性。

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