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      The preparation of synthetic graphite materials with hierarchical pores from lignite by one-step impregnation and their characterization as dye absorbents†

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      RSC Advances
      The Royal Society of Chemistry

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          Abstract

          Herein, synthetic graphite materials with hierarchical pores and large specific surface area were successfully prepared by one-step impregnation with lignite as the carbon source, sulfuric acid (H 2SO 4) as the oxidant, and phosphoric acid (H 3PO 4) as the activator. The microstructural characteristics of synthetic graphite were investigated via X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and transmission electron microscopy (TEM). Moreover, the pore parameters were studied by nitrogen adsorption–desorption. The results showed that synthetic graphite had a perfect orderly layered structure with high graphitization degree and a well-developed multistage pore structure with pore sizes ranging from nanometer to micrometer. The specific surface area and pore volume were 415.29 m 2 g −1 and 0.67 cm 3 g −1, respectively. The results of Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS) showed that the impregnation pretreatment provided polar groups containing oxygen to the surfaces. These unique characteristics make synthetic graphite possess good adsorption capacity for dye pollutants (the adsorption rate of the methyl orange solution was 99.9% within 60 min at 50 °C, and the pH value of the solution was 3). The effects of temperature and pH value on the adsorption capacity were studied. The repeatability of the adsorption performance was also tested, and the adsorption rate was 84.6% of the initial adsorption rate after five cycles.

          Abstract

          Herein, synthetic graphite materials with hierarchical pores and large specific surface area were prepared by one-step impregnation with lignite as the carbon source, H 2SO 4 as the oxidant, and H 3PO 4 as the activator.

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          Most cited references55

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          Recent advances based on the synergetic effect of adsorption for removal of dyes from waste water using photocatalytic process

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            Model for Raman scattering from incompletely graphitized carbons

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              Preparation of three-dimensional graphene oxide-polyethylenimine porous materials as dye and gas adsorbents.

              We report a facile method for the fabrication of three-dimensional (3D) porous materials via the interaction between graphene oxide (GO) sheets and polyethylenimine (PEI) with high amine density at room temperature under atmospheric pressure without stirring. The structural and physical properties of GO-PEI porous materials (GEPMs) are investigated by scanning electron microscopy, X-ray diffraction, thermogravimetric analysis, and nitrogen adsorption-desorption measurement and their chemical properties are analyzed by X-ray photoelectron spectroscopy, infrared spectroscopy, and Raman spectroscopy. GEPMs possess low density and hierarchical morphology with large specific surface area, and big pore volume. Furthermore, the as-prepared 3D porous materials show an excellent adsorption capacity for acidic dyes on the basis of the pore-rich and amine-rich graphene structure. GEPMs exhibit an extremely high adsorption capacity for amaranth (800 mg g(-1)), which are superior to other carbon materials. In addition, GEPMs also exhibit good adsorption capacity for carbon dioxide (11.2 wt % at 1.0 bar and 273 K).
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                Author and article information

                Journal
                RSC Adv
                RSC Adv
                RA
                RSCACL
                RSC Advances
                The Royal Society of Chemistry
                2046-2069
                25 April 2019
                17 April 2019
                25 April 2019
                : 9
                : 22
                : 12737-12746
                Affiliations
                [a] National Engineering Research Center of Coal Preparation and Purification, China University of Mining and Technology Xuzhou Jiangsu 221116 China scetyjg@ 123456126.com
                [b] School of Chemical Engineering and Technology, China University of Mining and Technology Xuzhou Jiangsu 221116 China
                Author information
                https://orcid.org/0000-0002-3000-960X
                Article
                c9ra00343f
                10.1039/c9ra00343f
                9063670
                35515865
                8ea351f1-3be4-4ae6-9dbc-3ce7764f3873
                This journal is © The Royal Society of Chemistry
                History
                : 15 January 2019
                : 1 April 2019
                Page count
                Pages: 10
                Funding
                Funded by: China University of Mining and Technology, doi 10.13039/501100005195;
                Award ID: Unassigned
                Categories
                Chemistry
                Custom metadata
                Paginated Article

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