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一种化学光接枝金属有机框架构建NH-UiO-66/BiOBr/PVDF光催化膜用于协同分离和自清洁染料的新策略。

A New Strategy of Chemical Photo Grafting Metal Organic Framework to Construct NH-UiO-66/BiOBr/PVDF Photocatalytic Membrane for Synergistic Separation and Self-Cleaning Dyes.

作者信息

Peng Lin, Shu Yong, Jiang Luming, Liu Weidong, Zhao Guixiang, Zhang Rui

机构信息

PetroChina Research Institute of Petroleum Exploration & Development, Beijing 100083, China.

Key Laboratory of Oilfield Chemicals, China National Petroleum Corporation (CNPC), Beijing 100083, China.

出版信息

Molecules. 2023 Nov 19;28(22):7667. doi: 10.3390/molecules28227667.

Abstract

Photocatalytic membranes are typical multifunctional membranes that have emerged in recent years. The lack of active functional groups on the surface of membranes made of inert materials such as polyvinylidene fluoride(PVDF) makes it difficult to have a stable binding interaction with photocatalysts directly. Therefore, in this study, we developed a simple method to prepare NH-UiO-66/BiOBr/PVDF(M) membranes for efficient dye treatment by grafting benzophenolic acid-functionalized NH-UiO-66 onto the surface of membranes with photocatalytic properties under visible light irradiation using benzophenolic acid with photoinitiating ability as an anchor. The structural characteristics, photocatalytic properties, antifouling properties, and reusability of the composite membranes were investigated in subsequent experiments using a series of experiments and characterizations. The results showed that the benzophenone acid grafting method was stable and the nanoparticles were not easily dislodged. The M composite membrane achieved a higher dye degradation efficiency (99.2%) than the pristine PVDF membrane at 62.9% within a reaction time of 180 min. In addition, the composite membranes exhibited higher permeate fluxes for both pure and mixed dyes and also demonstrated outstanding water flux recovery (>96%) after the light self-cleaning cycle operation. This combination proved to improve the performance of the membranes instead of reducing them, increasing their durability and reusability, and helping to broaden the application areas of membrane filtration technology.

摘要

光催化膜是近年来出现的典型多功能膜。由聚偏氟乙烯(PVDF)等惰性材料制成的膜表面缺乏活性官能团,这使得其难以直接与光催化剂形成稳定的结合相互作用。因此,在本研究中,我们开发了一种简单的方法来制备NH-UiO-66/BiOBr/PVDF(M)膜,用于高效处理染料,即使用具有光引发能力的二苯甲酰基苯甲酸作为锚定剂,在可见光照射下将二苯甲酰基苯甲酸功能化的NH-UiO-66接枝到具有光催化性能的膜表面。在后续实验中,通过一系列实验和表征研究了复合膜的结构特征、光催化性能、抗污染性能和可重复使用性。结果表明,二苯甲酮酸接枝方法稳定,纳米颗粒不易脱落。在180分钟的反应时间内,M复合膜的染料降解效率达到99.2%,高于原始PVDF膜的62.9%。此外,复合膜对纯染料和混合染料都表现出更高的渗透通量,并且在光自清洁循环操作后也表现出出色的水通量恢复率(>96%)。这种组合证明可以提高膜的性能而不是降低性能,提高其耐久性和可重复使用性,并有助于拓宽膜过滤技术的应用领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbd0/10675660/362eb29c5fe2/molecules-28-07667-g001.jpg

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