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Rightsizing Nanochannels in Reduced Graphene Oxide Membranes by Solvating for Dye Desalination

  • Liang Huang
  • , Suting Huang
  • , Surendar R. Venna
  • , Haiqing Lin
  • SUNY Buffalo
  • National Energy Technology Laboratory, Pittsburgh

Research output: Contribution to journalArticlepeer-review

106 Scopus citations

Abstract

Membranes with high water permeance, near-zero rejection to inorganic salts (such as NaCl and Na 2 SO 4 ), and almost 100% rejection to organic dyes are of great interest for the dye desalination (the separation of dyes and salts) of textile wastewater. Herein, we prepared reduced graphene oxide membranes in a solvation state (S-rGO) with nanochannel sizes rightly between the salt ions and dye molecules. The S-rGO membrane rejects >99.0% of Direct Red 80 (DR 80) and has almost zero rejection for Na 2 SO 4 . By contrast, conventional GO or rGO membranes often have channel sizes smaller than divalent ions (such as SO 4 2- ) and thus high rejection for Na 2 SO 4 . More interestingly, high salinity in typical dye solutions decreases the channel size in the S-rGO membranes and thus increases the dye rejection, while the Na 2 SO 4 rejection decreases because of the negatively charged surface on GO and the salt screening effect. The membranes also show pure water permeance as high as 80 L m -2 h -1 bar -1 , which is about 8 times that of commercial NF 90 membrane and 2 times that of a commercial ultrafiltration membrane (with a molecular weight cutoff of 2000 Da), rendering their promise for practical dye desalination.

Original languageEnglish
Pages (from-to)12649-12655
Number of pages7
JournalEnvironmental Science and Technology
Volume52
Issue number21
DOIs
StatePublished - Nov 6 2018

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