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面向未来废水处理应用的稳定且高性能聚电解质多层纳滤膜的研究进展

Progress towards Stable and High-Performance Polyelectrolyte Multilayer Nanofiltration Membranes for Future Wastewater Treatment Applications.

作者信息

Bóna Áron, Galambos Ildikó, Nemestóthy Nándor

机构信息

Soós Ernő Research and Development Center, University of Pannonia, Vár u. 8., H-8800 Nagykanizsa, Hungary.

Research Institute on Bioengineering, Membrane Technology and Energetics, University of Pannonia, Egyetem u. 10., H-8200 Veszprém, Hungary.

出版信息

Membranes (Basel). 2023 Mar 23;13(4):368. doi: 10.3390/membranes13040368.

Abstract

The increasing demand for nanofiltration processes in drinking water treatment, industrial separation and wastewater treatment processes has highlighted several shortcomings of current state-of-the-art thin film composite (TFC NF) membranes, including limitations in chemical resistance, fouling resistance and selectivity. Polyelectrolyte multilayer (PEM) membranes provide a viable, industrially applicable alternative, providing significant improvements in these limitations. Laboratory experiments using artificial feedwaters have demonstrated selectivity an order of magnitude higher than polyamide NF, significantly higher fouling resistance and excellent chemical resistance (e.g., 200,000 ppmh chlorine resistance and stability over the 0-14 pH range). This review provides a brief overview of the various parameters that can be modified during the layer-by-layer procedure to determine and fine-tune the properties of the resulting NF membrane. The different parameters that can be adjusted during the layer-by-layer process are presented, which are used to optimize the properties of the resulting nanofiltration membrane. Substantial progress in PEM membrane development is presented, particularly selectivity improvements, of which the most promising route seems to be asymmetric PEM NF membranes, offering a breakthrough in active layer thickness and organic/salt selectivity: an average of 98% micropollutant rejection coupled with a NaCl rejection below 15%. Advantages for wastewater treatment are highlighted, including high selectivity, fouling resistance, chemical stability and a wide range of cleaning methods. Additionally, disadvantages of the current PEM NF membranes are also outlined; while these may impede their use in some industrial wastewater applications, they are largely not restrictive. The effect of realistic feeds (wastewaters and challenging surface waters) on PEM NF membrane performance is also presented: pilot studies conducted for up to 12 months show stable rejection values and no significant irreversible fouling. We close our review by identifying research areas where further studies are needed to facilitate the adoption of this notable technology.

摘要

饮用水处理、工业分离和废水处理过程中对纳滤工艺的需求不断增加,凸显了当前最先进的复合薄膜(TFC NF)膜的几个缺点,包括耐化学性、抗污染性和选择性方面的局限性。聚电解质多层(PEM)膜提供了一种可行的、可工业化应用的替代方案,在这些局限性方面有显著改进。使用人工给水进行的实验室实验表明,其选择性比聚酰胺纳滤膜高一个数量级,抗污染性显著更高,且具有优异的耐化学性(例如,耐200,000 ppmh氯,在0 - 14 pH范围内稳定)。本综述简要概述了在逐层制备过程中可以修改的各种参数,以确定和微调所得纳滤膜的性能。介绍了在逐层过程中可以调整的不同参数,这些参数用于优化所得纳滤膜的性能。展示了PEM膜开发取得的重大进展,特别是选择性的提高,其中最有前景的途径似乎是不对称PEM纳滤膜,在活性层厚度和有机/盐选择性方面取得了突破:平均98%的微污染物截留率,同时NaCl截留率低于15%。强调了其在废水处理方面的优势,包括高选择性、抗污染性、化学稳定性和广泛的清洗方法。此外,还概述了当前PEM纳滤膜的缺点;虽然这些可能会妨碍它们在某些工业废水应用中的使用,但在很大程度上并不具有限制性。还介绍了实际进水(废水和具有挑战性的地表水)对PEM纳滤膜性能的影响:长达12个月的中试研究表明截留值稳定,且无明显的不可逆污染。我们通过确定需要进一步研究以促进这项显著技术应用的研究领域来结束本综述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07e5/10146247/ad69c459d3cf/membranes-13-00368-g003.jpg

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