Polyethylenimine-grafted nitrogen-doping magnetic biochar for efficient Cr(VI) decontamination: Insights into synthesis and adsorption mechanisms
Herein, polyethylenimine (PEI)-grafted nitrogen (N)-doping magnetic biochar (PEIMW@MNBCBM) was synthesized, and characterization results showed that the microwave-assisted PEI grafting and ball milling-assisted N doping introduced abundant amino, pyridine N and pyrrole N structures onto biochar, whi...
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Veröffentlicht in: | Environmental pollution (1987) 2022-11, Vol.313, p.120103-120103, Article 120103 |
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Sprache: | eng |
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Zusammenfassung: | Herein, polyethylenimine (PEI)-grafted nitrogen (N)-doping magnetic biochar (PEIMW@MNBCBM) was synthesized, and characterization results showed that the microwave-assisted PEI grafting and ball milling-assisted N doping introduced abundant amino, pyridine N and pyrrole N structures onto biochar, which possessed high affinity to Cr(VI) in the anion form. The as-prepared PEIMW@MNBCBM displayed pH-dependence adsorption performance and high tolerance to co-existing ions with maximum uptake capacity of Cr(VI) identified as 183.02 mg/g. Furthermore, PEIMW@MNBCBM could bind Cr(VI) through electrostatic attraction, complexion, precipitation, reduction and pore filling. Especially, effective reduction of Cr(VI) was ascribed to cooperative electron transfer of partial oxygen-containing functional groups, intramolecular pyridine/pyrrole N, protonated amino and Fe2+ on the adsorbent, while oxygen-containing and amino functional groups from N-doping biochar and PEI synergistically complexed Cr(III) via providing lone pair electrons to form coordinate bonds. Furthermore, the stable precipitation was formed between Fe3+ and Cr(III). Additionally, the Cr(VI) elimination efficiency could maintain 95.83% even after four adsorption-desorption cycles, suggesting PEIMW@MNBCBM as a high-performance adsorbent for Cr(VI) contaminated water remediation.
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•Microwave and ball milling can be used to prepare PEI-grafted N-doped magnetic BC.•PEI grafting and nitrogen doping possess synergistic effect on BC functionalization.•Protonated amino, heterocyclic-N and Fe2+ synergistically reduced Cr(VI) to Cr(III).•Oxygen-containing and amino functional groups synergistically complexed Cr(III).•Maximal removal of Cr(VI) by PEIMW@MNBCBM reaches 183.02 mg/g within 180 min. |
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ISSN: | 0269-7491 1873-6424 |
DOI: | 10.1016/j.envpol.2022.120103 |