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- W2278212077 abstract "More than one thousand consumer products containing engineered nanomaterials (ENMs) such as silver, carbon, titanium, silica, zinc, and gold are available in the markets. The ever-increasing use of ENMs in commercial products and applications has raised concerns over the potential consequence of environmental and human exposure. Although it is not clear at the outset if the potential for significant harm even exists, the best way to minimise the risks of ENMs might be secure recovery of the materials from manufacturing, recycling, and disposal points before they are discharged into the environments. The mobility of ENMs is influenced by the size and surface charge of the particles in the environmental media in which they are contained. It was clearly shown that primary engineered nanoparticles tend to from colloidal aggregates even in deionized (DI) water. To recover the ENMs from various water streams, it is important to understand fate/transport of ENMs and their interaction with other environmental components. Here, we explore the effects of natural organic matter (NOM) and pressure gradient on recovery efficiency of carbon nanomaterials by membrane filtration. As a result, we show that the more hydrophilic engineered nanoparticles showed lower separation efficiency by membrane filtration than the less hydroxylated nanoparticle aggregates. The results highlight the difficulties encountered when tackling the separation of heterogeneous nanomaterials from aqueous suspension using conventional membranes." @default.
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- W2278212077 date "2012-01-01" @default.
- W2278212077 modified "2023-09-24" @default.
- W2278212077 title "Recovery of engineered nanomaterials by dead-end and cross-flow ultrafiltration membranes from water" @default.
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