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      Efficient adsorption and full spectrum photocatalytic degradation of low concentration PPCPs promoted by graphene/TiO 2 nanowires hybrid structure in 3D hydrogel networks†

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      RSC Advances
      The Royal Society of Chemistry

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          Abstract

          The removal of low concentration PPCPs from water is a challenging issue. A graphene hydrogel with 3D networks shows great potential for accelerating eddy diffusion of low concentration PPCPs. Herein, to further promote its molecular diffusion, a graphene/TiO 2 nanowires (GNW) hybrid structure was implanted into graphene hydrogel. The as-prepared rGO/GNW hydrogel exhibited significantly enhanced adsorption–photocatalytic performance and excellent stability for low concentration ethenzamide, a typical pharmaceutical pollutant in water, under vacuum ultraviolet (VUV), ultraviolet (UV), visible and near-infrared light irradiation. When the initial ethenzamide concentration was 500 ppb and catalyst dosage was 10 mg/150 mL, ethenzamide was completely removed in 3 min and the corresponding photocatalytic apparent rate constant was 2.20 times that by GNW, 4.09 times that by rGO/P25 and 4.31 times that by rGO/NW under VUV irradiation, respectively, and its removal rate attained 99.0% in 120 min and the corresponding photocatalytic apparent rate constant was 2.06 times that by GNW, 3.34 times that by rGO/P25 and 17.42 times that by rGO/NW under UV irradiation, respectively. The GNW hybrid structure in the hydrogel played a vital role in overcoming the mass transfer resistance of low concentration PPCPs. The as-prepared rGO/GNW hydrogel exhibits significant potential for the removal of low concentration PPCPs from water.

          Abstract

          A 3D rGO/GNW hydrogel exhibits efficient adsorption, full spectrum photocatalytic performance and significant potential for low concentration PPCP removal from water.

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          Author and article information

          Journal
          RSC Adv
          RSC Adv
          RA
          RSCACL
          RSC Advances
          The Royal Society of Chemistry
          2046-2069
          21 July 2020
          15 July 2020
          21 July 2020
          : 10
          : 45
          : 27050-27057
          Affiliations
          [a] Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes, National Laboratory of Mineral Materials, School of Materials Science and Technology, China University of Geosciences Beijing 100083 China zhengh@ 123456cugb.edu.cn
          Author notes
          [‡]

          The first coauthors.

          Author information
          https://orcid.org/0000-0001-5688-4384
          Article
          d0ra03449e
          10.1039/d0ra03449e
          9122628
          35685946
          6d9e06de-401b-414e-b51b-c88be8e5427e
          This journal is © The Royal Society of Chemistry
          History
          : 17 April 2020
          : 10 July 2020
          Page count
          Pages: 8
          Funding
          Funded by: National Natural Science Foundation of China, doi 10.13039/501100001809;
          Award ID: 51772280
          Funded by: Fundamental Research Funds for the Central Universities, doi 10.13039/501100012226;
          Award ID: 2652019143
          Categories
          Chemistry
          Custom metadata
          Paginated Article

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