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胺功能化多孔聚合物凝胶对重金属离子的高效捕获

Highly Efficient Capture of Heavy Metal Ions on Amine-Functionalized Porous Polymer Gels.

作者信息

He Xue, Xia Jumu, He Jieli, Qi Kezhen, Peng Anzhong, Liu Yong

机构信息

College of Pharmacy, Dali University, Dali 671003, China.

出版信息

Gels. 2023 Apr 2;9(4):297. doi: 10.3390/gels9040297.

Abstract

Porous polymer gels (PPGs) are characterized by inherent porosity, a predictable structure, and tunable functionality, which makes them promising for the heavy metal ion trap in environmental remediation. However, their real-world application is obstructed by the balance between performance and economy in material preparation. Development of an efficient and cost-effective approach to produce PPGs with task-specific functionality remains a significant challenge. Here, a two-step strategy to fabricate amine-enriched PPGs, NUT-21-TETA (NUT means Nanjing Tech University, TETA indicates triethylenetetramine), is reported for the first time. The NUT-21-TETA was synthesized through a simple nucleophilic substitution using two readily available and low-cost monomers, mesitylene and α, α'-dichloro-p-xylene, followed by the successful post-synthetic amine functionalization. The obtained NUT-21-TETA demonstrates an extremely high Pb capacity from aqueous solution. The maximum Pb capacity, q, assessed by the Langmuir model was as high as 1211 mg/g, which is much higher than most benchmark adsorbents including ZIF-8 (1120 mg/g), FGO (842 mg/g), 732-CR resin (397 mg/g), Zeolite 13X (541 mg/g), and AC (58 mg/g). The NUT-21-TETA can be regenerated easily and recycled five times without a noticeable decrease of adsorption capacity. The excellent Pb uptake and perfect reusability, in combination with a low synthesis cost, gives the NUT-21-TETA a strong potential for heavy metal ion removal.

摘要

多孔聚合物凝胶(PPGs)具有固有孔隙率、可预测的结构和可调功能,这使其在环境修复中作为重金属离子捕获剂具有广阔前景。然而,材料制备过程中性能与经济性之间的平衡阻碍了它们在实际中的应用。开发一种高效且经济高效的方法来制备具有特定功能的PPGs仍然是一项重大挑战。在此,首次报道了一种制备富含胺的PPGs(NUT-21-TETA,NUT表示南京工业大学,TETA表示三乙烯四胺)的两步策略。NUT-21-TETA通过使用两种容易获得且低成本的单体均三甲苯和α,α'-二氯对二甲苯进行简单的亲核取代反应合成,随后成功进行了合成后胺功能化。所获得的NUT-21-TETA对水溶液中的铅具有极高的容量。通过朗缪尔模型评估的最大铅容量q高达1211 mg/g,远高于大多数基准吸附剂,包括ZIF-8(1120 mg/g)、FGO(842 mg/g)、732-CR树脂(397 mg/g)、13X沸石(541 mg/g)和活性炭(58 mg/g)。NUT-21-TETA可以轻松再生并循环使用五次,吸附容量没有明显下降。优异的铅吸附能力和完美的可重复使用性,再加上较低的合成成本,使NUT-21-TETA在去除重金属离子方面具有强大的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab26/10137378/d9ae46713b1e/gels-09-00297-g001.jpg

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