催化作用
生物炭
化学
废水
协同催化
生物量(生态学)
碳纤维
水解
污染物
纳米技术
污水处理
化学工程
产量(工程)
纳米笼
环境化学
活性炭
人类健康
小虾
废物管理
单体
材料科学
多相催化
氮气
作者
Mengying Zheng,Pengfei Zhou,Kangjun Zhou,Hongshun Ran,Wenyi Ni,Yifan Liu,Xinyi Cui,Yaxuan Jing
摘要
ABSTRACT Per‐ and polyfluoroalkyl substances (PFAS) are emerging global pollutants that threaten aquatic environments and human health. Here, we propose a novel paradigm converting PFAS‐containing wastewater into efficient catalysts, unlocking the catalytic potential of these “forever chemicals”. As the first example of this paradigm, PFAS‐containing wastewater was transformed into F‐containing biomass (here shrimp shells)‐derived catalysts, achieving PFAS removal efficiency exceeding 99.9%. The catalyst exhibited outstanding performance in PET recycling at a low catalyst loading (2.5 wt%), efficiently promoting methanolysis and hydrolysis to yield the corresponding monomers in near‐quantitative yields, surpassing commercial carbon and biochar catalysts. This performance arises from the combined presence of electron‑deficient carbon sites generated by fluorine species and nitrogen vacancies, both of which contribute to the activation of ester bonds. The catalyst also showed broad applicability and stability across 23 real‐world plastic wastes, including mixed PET and additive‐containing plastics. Moreover, PFAS incorporation into metal oxides, supported metals, and porous carbons was demonstrated, laying the groundwork for diverse PFAS‐derived catalytic applications. This work reconceptualizes PFAS as a resource, opening new avenues for sustainable valorization and functional catalyst development.
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