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不同形貌氧化铜纳米材料对用于水处理的 PVDF/PVP/CuO 超滤膜的渗透性、抗污染性和机械性能的影响。

Effectiveness of different CuO morphologies nanomaterials on the permeability, antifouling, and mechanical properties of PVDF/PVP/CuO ultrafiltration membrane for water treatment.

机构信息

Faculty of Civil, Water and Environmental Engineering, Shahid Beheshti University, Tehran, Iran.

Faculty of Civil, Water and Environmental Engineering, Shahid Beheshti University, Tehran, Iran.

出版信息

Chemosphere. 2023 Oct;337:139333. doi: 10.1016/j.chemosphere.2023.139333. Epub 2023 Jun 26.

Abstract

The hydrophobic nature of Poly (vinylidene fluoride) (PVDF) is a significant barrier to use in ultrafiltration, resulting in fouling, flux decline, and reduced lifespan in water treatment. This study examines the effectiveness of different morphologies of CuO nanomaterials (NMs) (spherical, rod, plate, and flower), synthesized by the facile hydrothermal method, to modify PVDF membrane with PVP additive for improving the performance of water permeability and antifouling. Such membrane configurations with different morphologies of CuO NMs improved hydrophilicity with a maximum water flux of 222-263 L mh compared to 195 L mh for the bare membrane and exhibited excellent thermal and mechanical strengths. The characterization results exhibited that plate-like CuO NMs were dispersed uniformly in the membrane matrix, and their incorporation as a composite improved the membrane properties. From the antifouling test with the bovine serum albumin (BSA) solution, the membrane with plate-like CuO NMs had the highest flux recovery ratio (FRR) (∼91%) and the lowest irreversible fouling ratio (∼10%). The antifouling enhancement was due to less interaction between modified membranes and foulant. Further, the nanocomposite membrane showed excellent stability and negligible Cu ion leaching. Overall, our findings provide a new strategy for developing inorganic nanocomposite PVDF membranes for water treatment.

摘要

聚偏二氟乙烯(PVDF)的疏水性是其在超滤中应用的一个重大障碍,导致其在水处理过程中易发生污垢、通量下降和寿命缩短。本研究通过简便的水热法合成不同形态的氧化铜纳米材料(NMs)(球形、棒状、板状和花状),考察了其对聚偏二氟乙烯膜的改性效果,以提高水透过性能和抗污染性。与裸膜的 195 L mh 相比,具有不同形态氧化铜纳米材料的这种膜结构可提高水通量,最大可达 222-263 L mh,表现出优异的热稳定性和机械强度。表征结果表明,板状氧化铜纳米材料在膜基质中均匀分散,其复合化提高了膜性能。从牛血清白蛋白(BSA)溶液的抗污染测试结果来看,具有板状氧化铜纳米材料的膜具有最高的通量恢复率(约 91%)和最低的不可逆污染率(约 10%)。抗污染增强归因于改性膜与污染物之间的相互作用减少。此外,纳米复合膜表现出优异的稳定性和可忽略的铜离子浸出。总的来说,本研究为开发用于水处理的无机纳米复合聚偏二氟乙烯膜提供了一种新策略。

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