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      Partially reduced graphene oxide and chitosan nanohybrid membranes for selective retention of divalent cations†

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      RSC Advances
      The Royal Society of Chemistry

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          Abstract

          A tremendous quantity of brackish water with a high proportion of divalent cations is in great need of water softening. Layer-stacked graphene oxide membranes show potential in membrane processing due to their molecular sieving properties, but show poor selective retention of cations due to unstable interlayer spacing and electrostatic interaction. In this study, a partially reduced graphene oxide (prGO) and chitosan (CS) nanohybrid membrane (prGO–CS) was fabricated to achieve the selective retention of divalent cations by adjusting the configuration and controlling the surface charge. The prGO–CS membrane, which included a CS skin and embedded prGO sheets, showed a performance boost of 98.0% rejection of Mg 2+ and 95.5% rejection of Ca 2+ when compared with a CS membrane. The membrane showed good water softening performance for brackish water under low operation pressure with a high Na +/Mg 2+ selectivity of 33.8. The excellent performance was attributed to the dense structure and positive charge of prGO–CS.

          Abstract

          Partially reduced graphene oxide and chitosan nanohybrid membranes were fabricated to exhibit selective retention of divalent cations.

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          Author and article information

          Journal
          RSC Adv
          RSC Adv
          RA
          RSCACL
          RSC Advances
          The Royal Society of Chemistry
          2046-2069
          11 April 2018
          11 April 2018
          11 April 2018
          : 8
          : 25
          : 13656-13663
          Affiliations
          [a] The Institute of Seawater Desalination and Multipurpose Utilization, State Oceanic Administration Tianjin 300192 China yszhang_membr@ 123456163.com
          [b] Department of Civil and Environmental Engineering, University of California Berkeley CA 94720 UK mib@ 123456berkeley.edu
          Author information
          https://orcid.org/0000-0002-0943-437X
          https://orcid.org/0000-0003-1040-0430
          https://orcid.org/0000-0003-3185-1820
          Article
          c8ra01916a
          10.1039/c8ra01916a
          9079788
          35539355
          489a4b77-c286-42bd-832c-a19ab433d785
          This journal is © The Royal Society of Chemistry
          History
          : 5 March 2018
          : 25 March 2018
          Page count
          Pages: 8
          Funding
          Funded by: National Natural Science Foundation of China, doi 10.13039/501100001809;
          Award ID: No. 21606059
          Categories
          Chemistry
          Custom metadata
          Paginated Article

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