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用于从水溶液中去除双氯芬酸钠的绿色聚合物膜的研制

Development of a Green Polymeric Membrane for Sodium Diclofenac Removal from Aqueous Solutions.

作者信息

Raota Camila Suliani, Crespo Janaina da Silva, Baldasso Camila, Giovanela Marcelo

机构信息

Área do Conhecimento de Ciências Exatas e Engenharias, Universidade de Caxias do Sul, Rua Franscisco Getúlio Vargas, 1130, Caxias do Sul 95070-560, Brazil.

出版信息

Membranes (Basel). 2023 Jul 12;13(7):662. doi: 10.3390/membranes13070662.

Abstract

Water-soluble polymers provide an alternative to organic solvent requirements in membrane manufacture, aiming at accomplishing the Green Chemistry principles. Poly(vinyl alcohol) (PVA) is a biodegradable and non-toxic polymer renowned for its solubility in water. However, PVA is little explored in membrane processes due to its hydrophilicity, which reduces its stability and performance. Crosslinking procedures through an esterification reaction with carboxylic acids can address this concern. For this, experimental design methodology and statistical analysis were employed to achieve the optimal crosslinking conditions of PVA with citric acid as a crosslinker, aiming at the best permeate production and sodium diclofenac (DCF) removal from water. The membranes were produced following an experimental design and characterized using multiple techniques to understand the effect of crosslinking on the membrane performance. Characterization and filtration results demonstrated that crosslinking regulates the membranes' properties, and the optimized conditions (crosslinking at 110 °C for 110 min) produced a membrane able to remove 44% DCF from water with a permeate production of 2.2 L m h at 3 bar, comparable to commercial loose nanofiltration membranes. This study contributes to a more profound knowledge of green membranes to make water treatment a sustainable practice in the near future.

摘要

水溶性聚合物为膜制造中有机溶剂的需求提供了一种替代方案,旨在实现绿色化学原则。聚乙烯醇(PVA)是一种可生物降解且无毒的聚合物,以其在水中的溶解性而闻名。然而,由于其亲水性,PVA在膜过程中的研究较少,这降低了其稳定性和性能。通过与羧酸的酯化反应进行交联程序可以解决这一问题。为此,采用实验设计方法和统计分析来实现以柠檬酸为交联剂的PVA最佳交联条件,旨在实现最佳的渗透液产量和从水中去除双氯芬酸钠(DCF)。膜按照实验设计制备,并使用多种技术进行表征,以了解交联对膜性能的影响。表征和过滤结果表明,交联调节了膜的性能,优化条件(在110°C下交联110分钟)制备的膜能够在3巴压力下从水中去除44%的DCF,渗透液产量为2.2 L m h,与商业疏松纳滤膜相当。这项研究有助于更深入地了解绿色膜,以便在不久的将来使水处理成为一种可持续的实践。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5961/10383731/574fc928529b/membranes-13-00662-g001.jpg

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