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使用环保型海藻酸钠@蒙脱石混合生物胶囊协同增强对氯苯酚的去除:封装和动力学释放研究的见解。

Synergistic enhancement of chlorophenols removal using eco-friendly alginate@montmorillonite hybrid bio-capsules: insights from encapsulation and kinetic release studies.

机构信息

Coordination and Analytical Chemistry Laboratory, Faculty of Sciences, University of Chouaïb Doukkali, El Jadida, Morocco.

Physical Chemistry of Natural Resources and Process Team, Laboratory of Applied Chemistry and Environment, Department of Chemistry, Faculty of Sciences, University Mohamed Premier, Oujda, Morocco.

出版信息

J Microencapsul. 2024 Nov;41(7):601-619. doi: 10.1080/02652048.2024.2395968. Epub 2024 Aug 26.

Abstract

This study investigates the synergistic effects of alginate@montmorillonite (Alg@Mt) hybrid microcapsules for enhancing water purification, focusing on improving the encapsulation of hydrophobic contaminants. Alg@Mt microcapsules were prepared through ionotropic gelation. Characterisation was performed using SEM-EDX, FTIR, XRD, and TGA. Encapsulation efficiency (EE), loading capacity (LC), and release behaviour were also examined. Alg@Mt microcapsules effectively removed phenol and its chlorinated derivatives from water. Incorporating Na-Mt improved structural and thermal properties, EE, and LC. Increasing the clay content to 60% (w/w) raised the EE of phenol and its more hydrophobic derivative, 2,4,6-trichlorophenol, from 39.74 ± 3.1% (w/w) and 63.91 ± 2% (w/w) to 60.56 ± 1.6% (w/w) and 82.28 ± 2.3% (w/w), respectively, with more controlled release rates, following Fickian diffusion mechanism. EE increased with phenolic substances hydrophobicity, while LC and release rates were inversely related. This approach is promising for removing hydrophobic contaminants from water.

摘要

本研究旨在探讨海藻酸钠@蒙脱土(Alg@Mt)杂化微胶囊在增强水净化方面的协同效应,重点改善对疏水性污染物的包封。Alg@Mt 微胶囊通过离子凝胶法制备。采用 SEM-EDX、FTIR、XRD 和 TGA 进行了表征。还考察了包封效率(EE)、载药量(LC)和释放行为。Alg@Mt 微胶囊能有效去除水中的苯酚及其氯化衍生物。加入 Na-Mt 可改善结构和热性能、EE 和 LC。将粘土含量增加到 60%(w/w),可将苯酚及其疏水性衍生物 2,4,6-三氯苯酚的 EE 从 39.74±3.1%(w/w)和 63.91±2%(w/w)提高至 60.56±1.6%(w/w)和 82.28±2.3%(w/w),释放速率更可控,遵循菲克扩散机制。EE 随酚类物质疏水性的增加而增加,而 LC 和释放速率则相反。该方法有望用于去除水中的疏水性污染物。

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