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Installation of synergistic binding sites onto porous organic polymers for efficient removal of perfluorooctanoic acid

Chemistry

Installation of synergistic binding sites onto porous organic polymers for efficient removal of perfluorooctanoic acid

X. Liu, C. Zhu, et al.

This paper reveals a groundbreaking method for creating highly efficient adsorbents for perfluorooctanoic acid (PFOA) using porous organic polymers. The innovative PAF-1-NDMB material shows an astonishing PFOA uptake capacity exceeding 2000 mg g⁻¹ and achieves swift removal below EPA advisory levels in just 2 minutes. This research was conducted by Xiongli Liu, Changjia Zhu, Jun Yin, Jixin Li, Zhiyuan Zhang, Jinli Li, Feng Shui, Zifeng You, Zhan Shi, Baiyan Li, Xian-He Bu, Ayman Nafady, and Shengqian Ma.

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Abstract
Herein, we report a strategy to construct highly efficient perfluorooctanoic acid (PFOA) adsorbents by installing synergistic electrostatic/hydrophobic sites onto porous organic polymers (POPs). The constructed model material of PAF-1-NDMB (NDMB = N,N-dimethyl-butylamine) demonstrates an exceptionally high PFOA uptake capacity over 2000 mg g⁻¹, which is 14.8 times enhancement compared with its parent material of PAF-1. And it is 32.0 and 24.1 times higher than benchmark materials of DFB-CDP (β-cyclodextrin (β-CD)-based polymer network) and activated carbon under the same conditions. Furthermore, PAF-1-NDMB exhibits the highest k₂ value of 24,000 g mg⁻¹ h⁻¹ among all reported PFOA sorbents. And it can remove 99.99% PFOA from 1000 ppb to <70 ppt within 2 min, which is lower than the advisory level of Environmental Protection Agency of United States. This work thus not only provides a generic approach for constructing PFOA adsorbents, but also develops POPs as a platform for PFOA capture.
Publisher
Nature Communications
Published On
Apr 19, 2022
Authors
Xiongli Liu, Changjia Zhu, Jun Yin, Jixin Li, Zhiyuan Zhang, Jinli Li, Feng Shui, Zifeng You, Zhan Shi, Baiyan Li, Xian-He Bu, Ayman Nafady, Shengqian Ma
Tags
Perfluorooctanoic acid
Adsorbents
Porous organic polymers
PAF-1-NDMB
Efficiency
Environmental remediation
Rapid removal
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