DNAPL-Responsive Hydrogel Nanoreactor Encapsulating nZVI for Enhanced Degradation of Chlorinated Contaminants in Groundwater
Kaijian Sang, Zhenjie Li, Xu Tao, C.P. Chen, Min Chen, Haichun Gao, Jiang Xu, Jie Hou 等 10 位
Zhejiang University Life Science Institute Institute of Life Sciences Life University
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The remediation of dense nonaqueous phase liquids (DNAPLs) in groundwater presents a persistent challenge, as conventional technologies suffer from side reactions with bulk water rather than chlorinated solvents within DNAPL source zones. By engineering DNAPL-responsive poly( N -isopropylacrylamide) (PNIPAM) hydrogels with precisely controlled hydrophobic domains, we fabricated nanoscale zerovalent iron (nZVI) reactors (nZVI @ PNIPAM) via in situ reduction of incorporated Fe 3+ ions. The hydrogel encapsulation enabled nZVI to remain well-dispersed, spontaneously penetrated porous media, and significantly suppressed side reactions with water. Crucially, the nanoreactors leveraged the selective interaction between DNAPLs and PNIPAM’s hydrophobic functional groups as a trigger, exposing encapsulated reactive nZVI exclusively at contamination interfaces through a rapid conformational transition and dehydration of PNIPAM. This interfacial interaction yields unprecedented efficiency, achieving 4.4–12.3-fold higher electron utilization for degradation of seven typical chlorinated solvents than conventional nZVI while suppressing water corrosion over 600-fold. Field-relevant evaluations demonstrated consistent performance across broad hydrochemical conditions (pH 6–9, 0–1000 mg L –1 KCl, 0–200 mg L –1 natural organic matter), with over 90% DNAPL removal in real contaminated groundwater. Our mechanistic discovery of pollutant-responsive activation represents a significant advance over current diffusion-limited approaches, potentially revolutionizing targeted in situ groundwater remediation strategies.
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工程Environmental remediation with nanomaterials
Advanced oxidation water treatment · Water Treatment and Disinfection
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