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基于设计的柔性双超交联聚合物的可溶胀阵列策略用于协同吸附甲苯和甲醛。

Swellable Array Strategy Based on Designed Flexible Double Hypercross-linked Polymers for Synergistic Adsorption of Toluene and Formaldehyde.

机构信息

Key Laboratory of New Low-Carbon Green Chemical Technology, Education Department of Guangxi Zhuang Autonomous Region, Guangxi Key Laboratory of Clean Pulp & Papermaking and Pollution Control, School of Chemistry and Chemical Engineering, School of Light Industry and Food Engineering, Guangxi University, Nanning 530004, China.

Institute of Chemical Science, University of Peshawar, Peshawar 25120, KP, Pakistan.

出版信息

Environ Sci Technol. 2023 Apr 25;57(16):6682-6694. doi: 10.1021/acs.est.3c00565. Epub 2023 Apr 13.

Abstract

High-capacity adsorption and removal of complex volatile organic compounds (VOCs) from real-world environments is a tough challenge for researchers. Herein, a swellable array adsorption strategy was proposed to realize the synergistic adsorption of toluene and formaldehyde on the flexible double hypercross-linked polymers (FD-HCPs). FD-HCPs exhibited multiple adsorption sites awarded by a hydrophobic benzene ring/pyrrole ring and a hydrophilic hydroxyl structural unit. The array benzene ring, hydroxyl, and pyrrole N sites in FD-HCPs effectively captured toluene and formaldehyde molecules through π-π conjugation and electrostatic interaction and weakened their mutual competitive adsorption. Interestingly, the strong binding force of toluene molecules to the skeleton deformed the pore structure of FD-HCPs and generated new adsorption microenvironments for the other adsorbate. This behavior significantly improved the adsorption capacity of FD-HCPs for toluene and formaldehyde by 20% under multiple VOCs. Moreover, the pyrrole group in FD-HCPs greatly hindered HO molecule diffusion in the pore, thus efficiently weakening the competitive adsorption of HO toward VOCs. These fascinating properties enabled FD-HCPs to achieve synergistic adsorption for multicomponent VOC vapor under a highly humid environment and overcame single-species VOC adsorption properties on state-of-the-art porous adsorbents. This work provides the practical feasibility of synergistic adsorption to remove complex VOCs in real-world environments.

摘要

从现实环境中高效吸附并去除复杂的挥发性有机化合物(VOCs)是研究人员面临的一个艰巨挑战。在此,提出了一种可溶胀的吸附策略,以实现甲苯和甲醛在柔性双超交联聚合物(FD-HCPs)上的协同吸附。FD-HCPs 表现出多种吸附位点,由疏水性苯环/吡咯环和亲水性羟基结构单元赋予。FD-HCPs 中的阵列苯环、羟基和吡咯 N 位点通过π-π 共轭和静电相互作用有效捕获甲苯和甲醛分子,并减弱它们之间的相互竞争吸附。有趣的是,甲苯分子与骨架的强结合力使 FD-HCPs 的孔结构变形,并为其他吸附质产生新的吸附微环境。这种行为显著提高了 FD-HCPs 对甲苯和甲醛的吸附容量,在多种 VOC 存在下提高了 20%。此外,FD-HCPs 中的吡咯基团极大地阻碍了 HO 分子在孔中的扩散,从而有效地削弱了 HO 对 VOC 的竞争吸附。这些迷人的特性使 FD-HCPs 能够在高湿度环境下实现多组分 VOC 蒸气的协同吸附,并克服了现有多孔吸附剂对单一组分 VOC 吸附性能的限制。这项工作为在实际环境中去除复杂 VOCs 的协同吸附提供了实际可行性。

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