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Ultraviolet Grafting of Bismuth Oxide Enhances the Photocatalytic Performance of PVDF Membrane and Improves the Problem of Membrane Fouling

机译:氧化铋的紫外线接枝增强了 PVDF 膜的光催化性能改善了膜污染问题

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摘要

Photocatalytic membranes are crucial in addressing membrane fouling issues. However, the grafting amount of the catalyst on the membrane often becomes a key factor in restricting the membrane’s self-cleaning capability. To address the challenge, this manuscript proposes a method for solving membrane fouling, featuring high grafting rates of bismuth oxide (Bi2O3) and acrylic acid (AA), significant contaminant degradation capability, and reusability. A highly photocatalytic self-cleaning microfiltration membrane made of polyvinylidene fluoride bismuth oxide and acrylic acid (PVDF-g-BA) was prepared by attaching nano Bi2O3 and acrylic acid onto the polyvinylidene fluoride membrane through adsorption/deposition and UV grafting polymerization. Compared with pure membranes and pure acrylic grafted membranes (PVDF-g-AA), the modified membrane grafted with 0.5% bismuth oxide not only improves the grafting rate and filtration performance, but also has higher self-cleaning ability. Furthermore, the degradation effect of this membrane on the organic dye methyl violet 2B under visible light irradiation is very significant, with a degradation rate reaching 90% and almost complete degradation after 12 h. Finally, after repeated filtration and photocatalysis, the membrane can still significantly degrade contaminants and can be reused.
机译:光催化膜对于解决膜污染问题至关重要。然而,催化剂在膜上的接枝量往往成为限制膜自清洁能力的关键因素。为了应对这一挑战,本手稿提出了一种解决膜污染的方法,该方法具有氧化铋 (Bi2O3) 和丙烯酸 (AA) 的高接枝率、显着的污染物降解能力和可重复使用性。将纳米 Bi2O3 和丙烯酸通过吸附/沉积和紫外线接枝聚合连接到聚偏二氟乙烯膜上,制备了一种由聚偏二氟化乙烯铋和丙烯酸制成的高度光催化自清洁微滤膜 (PVDF-g-BA)。与纯膜和纯丙烯酸接枝膜 (PVDF-g-AA) 相比,用 0.5% 氧化铋接枝的改性膜不仅提高了接枝率和过滤性能,而且具有更高的自清洁能力。此外,该膜在可见光照射下对有机染料甲基紫 2B 的降解效果非常显著,降解率达到 90%,12 h后几乎完全降解。最后,经过反复过滤和光催化后,该膜仍能显著降解污染物,并可重复使用。

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