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聚吡咯/蒙脱石/聚丙烯复合膜的制备及其对甲基橙和铅的吸附性能研究

Preparation of Polypyrrole/Montmorillonite/Polypropylene Composite Membranes and Investigation of Their Adsorption Performance for Methyl Orange and Pb.

作者信息

Wang Baoxin, Xu Binbin, Chen Gaofeng, Wang Chaozhong, Liu Yang, Bai Yang, Li Mengge, Peng Longgui

机构信息

China Energy Group Guoshen Company, Beijing 100101, China.

Guoneng Baoqing Coal Power and Chemical Co., Ltd., Shuangyashan 155600, China.

出版信息

Polymers (Basel). 2025 Apr 24;17(9):1158. doi: 10.3390/polym17091158.

Abstract

This study investigates the efficient and recyclable use of polymer-based membrane materials in wastewater treatment, focusing on calcium-based montmorillonite (Ca-MMT), pyrrole (Py), and polypropylene (PP). Through sodium activation, organic modification, pyrrole intercalation, and in situ polymerization, polypyrrole/montmorillonite (PPy/MMT) was synthesized. A polypyrrole/montmorillonite/polypropylene composite membrane (PPy/MMT/PP) was then fabricated using melt compression and coating techniques for pollutant adsorption. The modification of montmorillonite by PPy was examined, alongside the morphology, composition, and structure of PPy/MMT/PP. The membrane's adsorption performance for methyl orange and Pb⁺ was evaluated, with a focus on cyclic adsorption. The results showed that PPy increased the interlayer spacing of montmorillonite from 1.23 nm to 1.74 nm and enhanced its specific surface area by 99.424 m/g. The composite membrane exhibited improved wettability and adsorption capacity, achieving removal rates of 95.98% for methyl orange and 88.48% for Pb⁺, following pseudo-second-order kinetics. The membrane demonstrated recyclability, maintaining efficient adsorption/desorption over three cycles. This work provides valuable insights and technical support for sustainable wastewater treatment using polymer-based membranes.

摘要

本研究探讨了聚合物基膜材料在废水处理中的高效和可回收利用,重点关注钙基蒙脱石(Ca-MMT)、吡咯(Py)和聚丙烯(PP)。通过钠活化、有机改性、吡咯插层和原位聚合,合成了聚吡咯/蒙脱石(PPy/MMT)。然后采用熔融压缩和涂层技术制备了聚吡咯/蒙脱石/聚丙烯复合膜(PPy/MMT/PP)用于污染物吸附。研究了聚吡咯对蒙脱石的改性,以及PPy/MMT/PP的形态、组成和结构。评估了该膜对甲基橙和Pb⁺的吸附性能,重点是循环吸附。结果表明,聚吡咯使蒙脱石的层间距从1.23 nm增加到1.74 nm,比表面积提高了99.424 m/g。复合膜表现出改善的润湿性和吸附能力,遵循准二级动力学,对甲基橙的去除率达到95.98%,对Pb⁺的去除率达到88.48%。该膜具有可回收性,在三个循环中保持高效的吸附/解吸。这项工作为使用聚合物基膜进行可持续废水处理提供了有价值的见解和技术支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4985/12073596/79559c96f416/polymers-17-01158-g001.jpg

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