Adsorption properties and mechanism of zinc acrylic carbon nanosphere aggregates for perfluorooctanoic acid from aqueous solution

This study found that the cross-linkable zinc acrylic nanosphere aggregates (NAs) as precursors were successfully prepared by a simple one-step synthesis route, and Zn,O dopped-carbon nanocomposites were obtained through temperature-controllable engineering, which showed excellent adsorption capacit...

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Veröffentlicht in:Environmental pollution (1987) 2023-01, Vol.316, p.120540, Article 120540
Hauptverfasser: He, Enhui, Liu, Ning, Zhou, Yu, Wang, Zheng, Lu, Xiaolan, Yu, Liangmin
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Sprache:eng
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Zusammenfassung:This study found that the cross-linkable zinc acrylic nanosphere aggregates (NAs) as precursors were successfully prepared by a simple one-step synthesis route, and Zn,O dopped-carbon nanocomposites were obtained through temperature-controllable engineering, which showed excellent adsorption capacities for perfluorooctanoic acid (PFOA). A series of experiments were performed to investigate and compare carbon materials for the efficient removal of PFOA. The maximum adsorption capacities of PFOA absorbed on carbon nanospheres aggregates (CNAs) were calculated by the Langmuir (360.98 mg/g) and Sips models (309.65 mg/g). The kinetic model indicated there was chemical adsorption and physical adsorption in the adsorption process. Van der Waals force and electrostatic interactions might be the dominant mechanism of the adsorption process. Additionally, pore-filling also played a role in the adsorption process. Furthermore, the adsorption efficiency was still above 90% after five cycles. The selective adsorption ability was tested through various pollutants (metal ions and dye solutions) absorbed by the CNAs. Our results proved that carbon nanosphere aggregates (CNAs) are expected to be outstanding adsorption materials for the decontamination of PFOA from wastewater. [Display omitted] •Zinc acrylate carbon nanosphere aggregates were prepared by the simple one-step method.•The carbon material had excellent adsorption capacity (360.976 mg/g) for PFOA.•The carbon material had adsorption universality, including dyes and metal ions.
ISSN:0269-7491
1873-6424
DOI:10.1016/j.envpol.2022.120540