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Login Help. Show full item record. JavaScript is disabled for your browser. Some features of this site may not work without it. Modification of cellulose acetate membranes with graphene oxide nano-fillers for water treatment Mahmmod, Madina.
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University at Buffalo UB researchers have developed a novel 3D printed water-purifying graphene aerogel that could be scaled for use at large wastewater treatment plants. With a high specific surface area and ability to exert electrostatic and hydrophobic interactions simultaneously, graphene nanomaterials have recently emerged as a promising means of absorbing water contaminants. Recently, scientists have experimented with assembling nanosheets into macroscopic aerogels, lending them a higher absorption capacity and making them more retrievable. However, such graphene aerogels are rarely deployed within treatment facilities due to processing restrictions, that prevent them from being incorporated into industrial purifying reactors, columns and filters.
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Institute of Chemical Technology, Mumbai

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A UK-based team of researchers has created a graphene-based sieve capable of removing salt from seawater. The sought-after development could aid the millions of people without ready access to clean drinking water. The promising graphene oxide sieve could be highly efficient at filtering salts, and will now be tested against existing desalination membranes. Reporting their results in the journal Nature Nanotechnology , scientists from the University of Manchester, led by Dr Rahul Nair, show how they solved some of the challenges by using a chemical derivative called graphene oxide. Isolated and characterised by a University of Manchester-led team in , graphene comprises a single layer of carbon atoms arranged in a hexagonal lattice.
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