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Removal of Arsenic Using a Cationic Polymer Gel Impregnated with Iron Hydroxide
Published on: June 28, 2019
Synergistic adsorption-Fenton degradation of 2,4-dichlorophenol using chitosan-modified attapulgite for sustainable
Nazish Shahab1, Wei Han2, Saeed Ahmed3
1State Key Laboratory of Chemical Resource Engineering, Beijing Engineering Center for Hierarchical Catalysts, Beijing University of Chemical Technology, No. 15 Beisanhuan East Road, Chaoyang District, Beijing 100029, China. huiyuli@mail.buct.edu.cn.
Abstract:
2,4-Dichlorophenol (2,4-DCP), an emerging eco-contaminant with high bioaccumulation potential and persistence, was targeted for removal using chitosan-modified attapulgite (ATP@CCS) via a synergistic adsorption-Fenton process. ATP@CCS was synthesized through mild hydrothermal carbonization of chitosan, enabling dual functionality: (1) efficient adsorption/enrichment of 2,4-DCP (51% removal without H2O2) and (2) catalytic degradation via H2O2-assisted Fenton-like oxidation (97.8% removal under optimal conditions: 65 °C, pH 7, 40 mmol L-1 H2O2, 50 mg L-1 2,4-DCP). In a scalable fixed-bed reactor employing polysulfone-ATP@CCS pellets, the system treated 15 L of 2,4-DCP solution (50 mg L-1) with sustained efficiency (97.9% peak removal; 90% after 120 h), demonstrating continuous processing of 36 L contaminated water. The chitosan coating significantly suppressed iron leaching (Fe release: 1.84 ppm for raw ATP → 0.68 ppm for ATP@CCS). Kinetics adhered to pseudo-second-order models, while adsorption aligned with the Langmuir isotherm.
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