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获得具有不同阳离子度的阳离子聚丙烯酰胺乳液共聚物以用于不同废水处理的优化条件。

Optimization Conditions to Obtain Cationic Polyacrylamide Emulsion Copolymers with Desired Cationic Degree for Different Wastewater Treatments.

作者信息

Nguyen Tung Huy, Nguyen Linh Pham Duy, Nguyen Thao Thi Phuong, Le Minh Xuan Anh, Kieu Linh Thi Thuy, To Huong Thi, Bui Thanh Tien

机构信息

Center for Polymer Composite and Paper, School of Chemical Engineering, Hanoi University of Science and Technology, Hanoi 11600, Vietnam.

Department of Pharmaceutical Chemistry and Pesticides Tech, School of Chemical Engineering, Hanoi University of Science and Technology, Hanoi 11600, Vietnam.

出版信息

Polymers (Basel). 2023 Jun 15;15(12):2693. doi: 10.3390/polym15122693.

Abstract

The synthesis of cationic polyacrylamides (CPAMs) with the desired cationic degree and molecular weight is essential for various industries, including wastewater treatment, mining, paper, cosmetic chemistry, and others. Previous studies have already demonstrated methods to optimize synthesis conditions to obtain high-molecular-weight CPAM emulsions and the effects of cationic degrees on flocculation processes. However, the optimization of input parameters to obtain CPAMs with the desired cationic degrees has not been discussed. Traditional optimization methods are time-consuming and costly when it comes to on-site CPAM production because the input parameters of CPAM synthesis are optimized using single-factor experiments. In this study, we utilized the response surface methodology to optimize the synthesis conditions, specifically the monomer concentration, the content of the cationic monomer, and the content of the initiator, to obtain CPAMs with the desired cationic degrees. This approach overcomes the drawbacks of traditional optimization methods. We successfully synthesized three CPAM emulsions with a wide range of cationic degrees: low (21.85%), medium (40.25%), and high (71.17%) levels of cationic degree. The optimized conditions for these CPAMs were as follows: monomer concentration of 25%, content of monomer cation of 22.5%, 44.41%, and 77.61%, respectively, and initiator content of 0.475%, 0.48%, and 0.59%, respectively. The developed models can be utilized to quickly optimize conditions for synthesizing CPAM emulsions with different cationic degrees to meet the demands of wastewater treatment applications. The synthesized CPAM products performed effectively in wastewater treatment, with the treated wastewater meeting the technical regulation parameters. H-NMR, FTIR, SEM, BET, dynamic light scattering, and gel permeation chromatography were employed to confirm the structure and surface of the polymers.

摘要

合成具有所需阳离子度和分子量的阳离子聚丙烯酰胺(CPAM)对于包括废水处理、采矿、造纸、化妆品化学等在内的各种行业至关重要。先前的研究已经证明了优化合成条件以获得高分子量CPAM乳液的方法以及阳离子度对絮凝过程的影响。然而,尚未讨论用于获得具有所需阳离子度的CPAM的输入参数的优化。当涉及现场CPAM生产时,传统的优化方法既耗时又昂贵,因为CPAM合成的输入参数是通过单因素实验进行优化的。在本研究中,我们利用响应面法优化合成条件,具体为单体浓度、阳离子单体含量和引发剂含量,以获得具有所需阳离子度的CPAM。这种方法克服了传统优化方法的缺点。我们成功合成了三种具有广泛阳离子度的CPAM乳液:低阳离子度(21.85%)、中阳离子度(40.25%)和高阳离子度(71.17%)。这些CPAM的优化条件如下:单体浓度分别为25%,单体阳离子含量分别为22.5%、44.41%和77.61%,引发剂含量分别为0.475%、0.48%和0.59%。所建立的模型可用于快速优化合成具有不同阳离子度的CPAM乳液的条件,以满足废水处理应用的需求。合成的CPAM产品在废水处理中表现良好,处理后的废水符合技术规范参数。采用氢核磁共振、傅里叶变换红外光谱、扫描电子显微镜、比表面积分析仪、动态光散射和凝胶渗透色谱法来确认聚合物的结构和表面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b745/10303386/cf2b9f30ce5c/polymers-15-02693-g001.jpg

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