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用于去除水中新出现的关注污染物的疏水性低共熔凝胶

Hydrophobic Eutectogels for the Removal of Contaminants of Emerging Concern from Water.

作者信息

Gabirondo Elena, Araújo Joao M M, Pereiro Ana B, Tomé Liliana C

机构信息

CEMMPRE, ARISE, Department of Chemical Engineering, University of Coimbra, Rua Sílvio Lima, Coimbra, 3030-790, Portugal.

LAQV, REQUIMTE, Department of Chemistry, NOVA School of Science and Technology, FCT NOVA, Universidade NOVA de Lisboa, Caparica, 2829-516, Portugal.

出版信息

ChemSusChem. 2025 Jul 1;18(13):e202500307. doi: 10.1002/cssc.202500307. Epub 2025 Jun 3.

Abstract

Five hydrophobic eutectic solvents based on menthol and thymol were prepared and incorporated into a poly(ethylene glycol) diacrylate (PEGDA) network to form eutectogel membranes. The two most promising eutectogels were further optimized by adding ethyl hexylacrylate (HA) to the eutectogel formulation to improve the compatibility between the eutectic solvent and polymer network and to enhance the water resistance of the resulting membranes. Thermal analysis confirmed the successful formation and integration of eutectic solvents within the polymer network. Rheological studies demonstrated the rubber-like behavior of the prepared hydrophobic eutectogels, with menthol-based variants exhibiting superior mechanical properties. Finally, sorption experiments were conducted using the optimized octanoic acid:menthol PEGDA-HA eutectogel to evaluate its efficiency in removing various contaminants of emerging concern (CECs), including diclofenac, iopromide, cefazolin, bisphenol A, and dichlorophenol. The results revealed high sorption capacities for bisphenol A (3213 mg⋅kg) and dichlorophenol (2981 mg⋅kg), followed by diclofenac (1490 mg⋅kg), whereas minimal sorption capacities were observed for iopromide and cefazolin. Overall, this study demonstrates the potential of hydrophobic eutectogels as efficient and tunable materials for water purification, paving the way for their application in the environmental remediation of different emerging pollutants related to global change and human activities.

摘要

制备了五种基于薄荷醇和百里酚的疏水性低共熔溶剂,并将其掺入聚乙二醇二丙烯酸酯(PEGDA)网络中以形成低共熔凝胶膜。通过向低共熔凝胶配方中添加丙烯酸乙基己酯(HA),对两种最有前景的低共熔凝胶进行了进一步优化,以改善低共熔溶剂与聚合物网络之间的相容性,并提高所得膜的耐水性。热分析证实了低共熔溶剂在聚合物网络中的成功形成和整合。流变学研究表明,所制备的疏水性低共熔凝胶具有类橡胶行为,基于薄荷醇的变体表现出优异的机械性能。最后,使用优化后的辛酸:薄荷醇PEGDA-HA低共熔凝胶进行吸附实验,以评估其去除各种新出现的关注污染物(CECs)的效率,这些污染物包括双氯芬酸、碘普罗胺、头孢唑林、双酚A和二氯酚。结果显示,对双酚A(3213 mg⋅kg)和二氯酚(2981 mg⋅kg)的吸附容量较高,其次是双氯芬酸(1490 mg⋅kg),而对碘普罗胺和头孢唑林的吸附容量极小。总体而言,本研究证明了疏水性低共熔凝胶作为高效且可调节的水净化材料的潜力,为其在与全球变化和人类活动相关的不同新出现污染物的环境修复中的应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3499/12232094/6598dba8a68f/CSSC-18-e202500307-g006.jpg

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